759
- VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt.-Ing. (FH), Cand. M.Sc. Martin Sachse Ein besonderer Dank geht an die Mentoren: Dipl.-Ing. Jens Hänel - Vorstand OES e.V. Dr. Dominik F. Gronarz - Geschäftsführer OES Management GmbH sowie an die direkt und indirekt Beteiligten: Jens Drechsel - CreaPhys GmbH Dr. Olaf Hild - Fraunhofer FEP Dr. Wulf Grählert- Fraunhofer IWS Dr. rer. nat. Benjamin Schumm - Fraunhofer IWS Dr. Ines Dani - Fraunhofer IWS Dr.-Ing. Antonino Ardilio - Fraunhofer IAO Prof. Ingo Demske - ehem. Leiter Strategische Planung, Schering AG, ohne die, diese Technologiestudie nicht möglich gewesen wäre. Leipzig, im Juni 2015

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Page 1: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

- VERTRAULICH -

Technologiestudie zu

Dünnschichtdepositionstechnologien für

Organische Elektronik: Am Fallbeispiel Organic

Electronics Saxony e.V.

von

Dipl.-Wirt.-Ing. (FH), Cand. M.Sc. Martin Sachse

Ein besonderer Dank geht an die Mentoren:

Dipl.-Ing. Jens Hänel - Vorstand OES e.V.

Dr. Dominik F. Gronarz - Geschäftsführer OES Management GmbH

sowie an die direkt und indirekt Beteiligten:

Jens Drechsel - CreaPhys GmbH

Dr. Olaf Hild - Fraunhofer FEP

Dr. Wulf Grählert- Fraunhofer IWS

Dr. rer. nat. Benjamin Schumm - Fraunhofer IWS

Dr. Ines Dani - Fraunhofer IWS

Dr.-Ing. Antonino Ardilio - Fraunhofer IAO

Prof. Ingo Demske - ehem. Leiter Strategische Planung, Schering AG,

ohne die, diese Technologiestudie nicht möglich gewesen wäre.

Leipzig, im Juni 2015

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I

Vorwort – Flexible Organische Elektronik mit herausragendem

Potenzial für die Zukunft

ie Technologie flexible Organische Elektronik hat in den letzten 10 Jahren eine

rasante technologische Entwicklung hingelegt. Zunächst wurde sie von den

Unternehmen der etablierten Elektroniktechnologien eher beobachtet. Im

Bereich der universitären Forschung wurde angesichts des erwarteten Potenzials mit

Hochdruck an verwertbarer Elektronik auf flexiblen Trägersubstraten gearbeitet und zwar

weltweit.

In den vergangenen Jahren wurden Materialien und Organische Elektronik entwickelt und

aus anderen Bereichen der Industrie modifizierte Technologien für die Herstellung

ebensolcher Elektronik auf flexiblen Grundtägern adaptiert. Dazu zählen vor allem die aus

der traditionellen Druckindustrie bekannten Verfahren und auch Vakuumverfahren wurden

anwendungsspezifisch auf die neue Art dieser Elektronik flexibilisiert.

Durch die Überführung von traditionellen Druck- und Vakuumtechnologien auf die

Herstellung flexibler Elektronik, konnten effiziente und auch kostengünstigere

Fertigungsverfahren als bisher in der traditionellen Elektronik entwickelt und verifiziert

werde. Dazu zählen die Rolle-zu-Rolle-Verfahren, die sowohl im Druck- als auch im

Vakuumbereich heute Anwendung finden.

Der industrielle Maschinenbau in Deutschland, Europa und weltweit nutzten diese

Chancen in zunehmendem Maß sehr gut und haben durch sowohl deutsche und

europäische aber auch internationale Kooperation von Forschung und Industrie

beachtliche Umsetzungserfolge erzielt.

Das Ergebnis ist eine im Wesentlichen vorhandene internationale gute Basis von

Produktionsmaschinen mit unterschiedlich nutzbaren Fertigungstechnologien für die

flexible Elektronik.

Wie bei jeder neu aufkommenden Technologie, ist der Verlauf vom Start über die

Eruierung des Potenziales einen euphorischen Weg gegangen. So erging es auch der

flexiblen Organischen Elektronik. Die Erwartungen, die in der Öffentlichkeit propagiert

wurden, waren immens, auch um die notwendige Aufmerksamkeit der Politik zu erlangen.

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II

Erste Entwicklungen entstanden in der Photovoltaik und dem Beleuchtungssektor, um die

Leistungsfähigkeit dieser neuen Technologie zu demonstrieren. Dies gelang weltweit auf

erstaunlich hohem Niveau.

Seit den letzten Jahren wurde jedoch allseits erkannt, dass sowohl die Materialien als

auch die Fertigungstechnologien ihr gesamtes Potenzial ausschöpfen müssen, um in der

späteren Herstellung von derartigen Produkten die etablierten Technologien ergänzen zu

können, mit ihnen gleich zu ziehen oder sie sogar im Kosten-Nutzen-Verhältnis noch zu

übertreffen.

Es gibt aus den Erfahrungen der letzten Jahre in Wissenschaft, Forschung und

Entwicklung zu konstatieren, dass die Materialien der flexiblen Organischen Elektronik

noch erhebliches Potenzial heben müssen, um die zukünftigen innovativen Produkte in

exzellenter, wettbewerbsfähiger und langlebiger Qualität für den Markt fertigen zu können.

Hier liegen die Herausforderungen der Zukunft für die ernsthaften Enthusiasten der

flexiblen Organischen Elektronik weltweit. Nur wer zuerst und am schnellsten geniale

Produktideen mit dieser hoch potenten Technologie in Innovationen umsetzen kann, wird

in diesem Bereich Geld verdienen können.

Hier müssen die Europäer, die durchaus lange Zeit als Vorreiter und Treiber der flexiblen

Elektronik galten, ihr wirtschaftliches Potenzial intensivieren, konzentrieren und

ausspielen, um im weltweiten Wettbewerb in dieser Technologie mit hohem Potenzial mit

dabei zu sein.

Die Ihnen vorliegende systematische Studie soll einen pragmatischen Ansatz zur

Einschätzung des Standes und des Potenzials dieser Technologie darstellen, um auch

neue Sichtweisen aus nicht unmittelbar in die Forschung involvierten Kreisen zu

dokumentieren.

Organic Electronics Saxony Dresden Juni 2015

Jens Hänel

Vorstand

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III

Inhaltsverzeichnis

Vorwort – Flexible Organische Elektronik mit herausragendem Potenzial für die

Zukunft ............................................................................................................................. I

Inhaltsverzeichnis .......................................................................................................... III

Abkürzungsverzeichnis ................................................................................................. IV

1 Einleitung................................................................................................................. 1

2 Überblick ................................................................................................................. 2

2.1 Dünnschichtdepositionstechnologien ................................................................. 2

2.2 Organic Electronics Saxony e.V. ....................................................................... 4

3 Technologieanalyse ................................................................................................ 6

3.1 Ermittlung der relevanten Funktionen ................................................................ 6

3.2 Identifizierung der Konkurrenztechnologien und -Institutionen ........................... 6

3.3 Auswertung der Stärken und Schwächen der Technologien ............................ 24

4 Applikationsanalyse ............................................................................................. 28

4.1 Sammlung existierender Applikationen ............................................................ 28

4.2 Identifikation potenzieller Applikationen aus interner Sicht .............................. 28

4.3 Identifikation potenzieller Applikationen aus externer Sicht.............................. 28

4.4 Zusammenfassung aller Applikationsideen ...................................................... 31

4.5 Ermittlung von Marktkennzahlen für die Applikationen ..................................... 32

5 Potenzialermittlung ............................................................................................... 34

5.1 Potenzialportfolio ............................................................................................. 36

5.2 Analyse des Potenzialportfolios nach Fallgruppen ........................................... 38

6 Strategiemöglichkeiten ......................................................................................... 39

6.1 Vorwort ............................................................................................................ 39

6.2 Ziele ................................................................................................................ 40

6.3 Strategiemöglichkeiten .................................................................................... 41

6.4 SWOT-Analyse des Vorgehens ....................................................................... 42

6.5 Zusammenfassung .......................................................................................... 42

Literaturverzeichnis ...................................................................................................... 45

Abbildungsverzeichnis ................................................................................................. 46

Tabellenverzeichnis ...................................................................................................... 47

Überblick zur Patentrecherche .................................................................................... 48

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IV

Abkürzungsverzeichnis

ITO Indium tin oxide

OE Organische Elektronik

OES Organic Electronics Saxony e.V.

OFET Organische Feldeffekttransistoren

OLED Organische Lichtemittierende Diode

OPV Organische Photovoltaik

OPVJ Organic Vapor Jet Printing

OS Organische Sensoren

OVPD Oganic Vapor Phase Deposition

TCO Transparent conducting oxides

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Seite 1

1 Einleitung

s werden Wege gesucht, um Elektronik auf einfache und kostengünstige Weise

herzustellen. Hierfür hat sich in den letzten Jahren die Organische Elektronik

(OE), welche beispielsweise Organische Leuchtdioden (OLED), Organische

Photovoltaik (OPV), Organische Feldeffektransistoren (OFET) und Organische Sensoren

(OS) umfasst, als gut Rolle-zu-Rolle prozessierbar herausgestellt.

Besonders im Bereich der OLED sind die Fertigungstechnologien weit fortgeschritten. Es

hat sich gezeigt, dass sich im Bereich der OPV sowohl vakuum- als auch nassfilmbasierte

Depositionsverfahren für eine Massenproduktion eignen können. Jedoch sind die zu

erreichenden Genauigkeiten und die einsetzbaren Materialen bei beiden Obergruppen der

Depositionsverfahren verschieden, sodass derzeit intensiv und weltweit an Pilotanlagen

Versuchsmuster hergestellt werden und sich erste Massenprodutionsanlagen in

Entwicklung befinden.

Als bedeutender Industriesektor wird die Elektronik in den nächsten Jahrzenten stärker

durch den Einfluß der Organischen Elektronik gekennzeichnet werden. Dies ergibt sich an

der Notwendigkeit von immer kostengünstigeren elektronischen Einzelbauteilen, aber

auch Systemen die beispielsweise nicht nur eine einfache OPV-Baugruppe auf

Bekleidung, zur Bereitstellung einer Spannungsquelle für z.B. ein Smartphone, umfasst

sondern OE-Systeme die als Verbund von OLED, OPV, OS, OFET / Speicher sowie

möglicher Weise Organischen Prozessoren und Akkumulatoren komplexe und vielfältige

Funktionen erfüllen können.

Mit dem steigenden Reifegrad der Herstellungsverfahren und insbesondere der

Dünnschichtdepositionstechnologien für die Organischen Halbleitermaterialien sowie

Leiter, Isolatoren und Barrierematerialien können aufgrund des Kostenvorteils im Rolle-

zu-Rolle-Fertigungsverfahren im Vergleich zu den aufwändigeren Herstellungsprozessen

der Anorganischen Elektronik teilweise Substitutions Herstellungsverfahren sowie

Produkte realisiert werden, als auch teilweise neue Anwendungsgebiete erschlossen

werden, die zuvor aufgrund unzureichender Wirtschaftlichkeit unbesetzt bleiben mussten.

Im Folgenden soll deshalb eingehend der aktuelle Stand der Technik der verschiedenen

Dünnschichtdepositionstechnologien, in Hinblick auf desen Potenzial für die technische

Machbarkeit, für neue Anwendungsgebiete und für die zukünftigen Marktanteile,

analysiert werden. Woraus schlußendlich Strategiemöglichkeiten zur Technolgieplanung

im internationalen Wettbewerb abgeleitet und aufgezeigt werden.

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2 Überblick

Zuerst soll zum Verständis ein prägnanter Überblick zu den zur Verfügung stehenden

Dünnschichtdepositionstechnologien und der Struktur des Organic Electronics Saxony

e.V. (OES), als gewähltes Fallbeispiel, gegeben werden.

2.1 Dünnschichtdepositionstechnologien

Grundsätzlich werden im Bereich der OE die Dünnschichtdepositionstechnologien in

vakuum- und nassfilmbasierte Prozesse unterschieden, hinzu kommt eine Reihe von

Technologien mit eigener Charakteristik.

Vakuum-Dünnschichtdeposition

Verfahren: Anwendungsbereiche:

Themisches Bedampfen Erzeugung von Stoffgemischen durch mehrere

Verdampferquellen (gute Dotierbarkeit)

Schichtdicken im nm Bereich

beliebig viele Schichten übereinander abscheidbar

hohe Homogenität

für Monomere und Metalle

Sputtern Auftrag von TCO z. B. ITO auf Substrate

durch Ioneneinsatz unvorteilhaft für organische

Materialien

Elektronenstrahl-

Bedampfen

Aufgrund des energiereichen Elektronenstrahls und

emmitierenden UV-Lichtes unvorteilhaft für

organische Materialien

Nassfilm-Dünnschichtdeposition1

Verfahren: Anwendungsbereiche:

Slot Die für große homogene Flächen

sehr hohe Durchsatzraten

sehr kostengünstig im R2R-Verfahren

Ink-Jet Individuelle Strukturen bis ca. 10 µm

hohe Durchsatzraten

Siebdruck (Screen printing) wiederkehrende Strukturen bis ca. 25 µm

1 Vgl. Hecker, OE-A (Hrsg.): Organic and Printed Electronics. 2015, S. 28

Tabelle 1: Vakuum-Dünnschichtdeposition

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mittlere Durchsatzrate

Flexodruck wiederkehrende Strukturen bis ca. 10 µm

hohe Durchsatzrate

Offset wiederkehrende Strukturen bis ca. 10 µm

sehr hohe Durchsatzraten

Gravure wiederkehrende Strukturen bis ca. 3 µm

hohe Durchsatzraten

Spin-Coating Labormuster, da geringe Durchsatzrate

Sonstige Dünnschichtdepositionstechnologien

Verfahren: Anwendungsbereiche:

Atomlagendeposition (ALD) flächige Barriereschichten

Spray-Deposition/Coating flächiges Beschichten

Organic Vapor Phase

Deposition (OVPD) /

Trägergas

flächiges Beschichten

Organic Vapor Jet Printing

(OPVJ)

individuelle Strukturen bis unter 50 µm

Lithografie für sehr feine Strukturen / höchste Auflösung

geringe Durchsatzrate

Pulverauftrag mit Sintern Kontaktstellen

Damit wird deutlich das grundsätzlich verschiedene Dünnschichtdepositionstechnologien

zur Herstellung OE eingesetzt werden können. Einige Verfahren haben sich jedoch für

spezielle Anwendungen als besonders vorteilhaft, in Hinblick auf Prozessdurchsatz und -

kosten bewährt. So wird zum Auftagen von TCO’s wie ITO auf Substrate häufig Sputtern,

zum Beschichten kurzkettiger organischer Materialien die Physikalische

Gasphasenabscheidung mittels thermischen Verdampfens, bei hingegen langkettigen

organischen Materialien Drucktechniken wie Slot-Die und Ink-Jet sowie zur Herstellung

von Barriereschichten häufig ALD eingesetzt.

Für den jeweiligen Zweck muss deshalb jeweils das Verfahren identifiziert und

weiterentwickelt werden, welches die technischen Spezifikationen erfüllen kann und eine

Massenproduktion der OE zu geringsten Kosten erlaubt. Die Verfahren stehen dabei in

kontinuierlicher Konkurrenz zueinander und schreiten in ihrer Entwicklung durch weltweite

Technologieakteure dynamisch voran.

Tabelle 2: Nassfilm-Dünnschichtdeposition

Tabelle 3: Sonstige Dünnschichtdepositionstechnologien

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Seite 4

2.2 Organic Electronics Saxony e.V.

Der Verein befasst sich mit OE und ist in seiner Mitgliederstruktur regional auf Sachsen

sowie das angrenzende Sachsen-Anhalt und Thüringen begrenzt. Dies fördert zum einen

die Ausbildung eines starken Clusters in einer räumlich klar definierten Region,

andererseits kann dieses räumlich klar definierte „Netzwerk“ eine Barrierewirkung in

positiver wie negativer Sichtweise für die F&E-Aktivitäten und den Wettbewerb entfalten.

Da grundsätzlich anzunehmen ist, dass für ein Erfolgreiches agieren auf den

internationalen Märkten, neben einer kritischen Clustergröße auch die Fähigkeit

überregionale und insbesondere internationale F&E-Projekte sowie Strategische

Kooperationen aufzubauen und zu unterhalten, von eminenter Bedeutung sind.

Untermauert wird die Bedeutung dieses Unternehmenserfolgsfaktors durch das

Praxisbeispiel eines strategischen Investments südkoreanischer OLED-Unternehmen in

den hiesigen OLED Spezialisten Novaled GmbH aus Dresden.

In seiner Mitgliedsstruktur umfasst der OES folgende Unternehmen und

Forschungseinrichtungen:2

Name: ggf. Hauptgebiet:

Start-ups: Heliatek GmbH OPV

SIOD OLED

Unternehmen: 3D-Micromac AG Lasermikrobearbeitung

Adenso GmbH Dienstleister für

Entwicklungsprozesse

Contronix GmbH Elektronische Baugruppen

CreaPhys GmbH Vakuum-Dünnschichttechnologie

DTF Technology GmbH Vakuum-Dünnschichtdeposition

Novaled GmbH OLED

Plastic Logic Germany Elektronisches Papier

Sempa Systems GmbH Reinstmediensysteme

Sunic System Ltd. OLED

VON ARDENNE GmbH Vakuumprozesse

WOLFRAM

Design/Engineering

Dienstleister für Konstruktion und

Design

Forschungs- Fraunhofer-Institut für Elektronische Nanosysteme

2 Vgl. http://www.oes-net.de/de/unsere-mitglieder/mitgliederliste.html vom 12.05.2015

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institute: Fraunhofer Institut für Organische Elektronik, Elektronenstrahl- und

Plasmatechnik

Fraunhofer-Institut für Werkstoffmechanik

Fraunhofer-Institut für Werkstoff- und Strahltechnik

Institut für Angewandte Photophysik

InnoProfile- Nachwuchsforschungsgruppe "Organische p-i-n

Bauelemente"

Leibniz-Institut für Polymerforschung Dresden e. V.

Universitäten: Bauhaus-Universität Weimar

TU Dresden

Institut für AngewandtInstitut für Aufbau- und Verbindungstechnik der

Elektronike Photophysik

Institut für Halbleiter- und Mikrosystemtechnik

Hochschule für Technik, Wirtschaft und Kultur Leipzig Fakultät

Medien, Lehrgebiet Werkstoffe und Werkstoffprüfung

Technische Universität Chemnitz (Institut für Print- und

Medientechnik)

Laserinstitut Hochschule Mittweida

Durch die Vernetzung von Wissenschaft und Wirtschaft ergibt sich eine heterogene

Clusterstruktur mit facettenreichem Know-how und enormen F&E-Potenzial. Insbesondere

sind viele der Mitgliedsunternehmen ehemalige Start-ups oder sogar noch in der

Gründungsphase, vor dem intensiven Markteintritt, befindlich. Dadurch sind viele

Unternehmen durch ein hohes Maß an Innovationskraft und Flexibilität, in Hinsicht auf

neue technologische Entwicklungen, gekennzeichnet und auch die Fähigkeit sich diesen

gemeinsam mit dem Cluster schnell anpassen zu können. Beispielsweise verfolgt aktuell

das Start-up SIOD (entstanden aus der TU Chemnitz) neue Technologieansätze zur

Herstellung von sehr kostengünstigen OLED mittels Druckverfahren.

Tabelle 4: Mitgliederstruktur OES e.V.

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3 Technologieanalyse

Die Technologieanalyse wir systematisch durch die nachfolgenden Schritte

vorgenommen.

3.1 Ermittlung der relevanten Funktionen

Bezeichnung der

Technologie:

Dünnschichtdepositiontechnologie für OE

Hauptfunktionen der

Technologie:

Herstellen von flächigen und strukturierten Schichten

aus organischen Materialien auf Oberflächen

Nebenfunktionen der

Technologie:

Herstellen von sehr dünnen TCO- und Metallschichten

Herstellen von Barriereschichten

Herstellen von Mehrfachschichtsystemen

unterschiedlicher Materialien

Massen Produktionsfähigkeit

Die technischen Möglichkeiten zur Erfüllung der Haupt- und Nebenfunktionen sind

manigfaltig, selbst Standartwerke wie „Nanoelectronics and Information Technology“ von

Rainer Waser beschreiben in ihren Auflagen von 2005 und 2012 völlig verschiedene,

favorisierte Depositionstechnologien zur Herstellung von Bsp. OLED. Es ist somit

grundsätzlich nicht absehbar, wie sich die komplexe Fortentwicklung der OE,

insbesondere deren Bauartarchitekturen, Anzahl von Schichten, Strukturen und deren

Auflösungen sowie das dafür eingesetzte Material, auf die einsetzbaren

Dünnschichtdepositionstechnologien auswirken. Eine darüberhinausgehende spezifische

Betrachtung der Unterfunktionen einer jeder infrage kommenden „spekulativen

Zukunftstechnologie“ ist deshalb in dieser Phase nicht sinnvoll.

3.2 Identifizierung der Konkurrenztechnologien und -Institutionen

Aufgrund der Feststellung, dass die eingesetzen Dünnschichtdepositionstechnologien für

OE stark im Wandel sind, ist es der einzig mögliche Weg die Technologien zu

identifizieren, welche grundsätzlich die Fähigkeit aufweisen Haupt- und/oder

Nebenfunktion zu gewährleisten. Dabei ist auch zu prüfen, ob sich die Technologien

gegenseitig substituieren oder ergänzen können.

Tabelle 5: Funktionsanalyse

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Zur objektiven Auswertung wurde eine intensive Patentrecherche durchgeführt, da sich insbesondere neuste Fachliteratur bzgl. der bevorzugen

Technologien widerspricht und nur durch die Feststellung des Standes der Technik aktuelle und belastbare Aussagen getroffen werden können.

Es wurde die Datenbank Patbase verwendet, welche im Rahmen der Recherche und Auswertung ihre Leistungsgrenze erreichte.

Top 14 Anmeldeländer für Dünnschichtdepositionstechnologie seit 2010 (Priorität):

Bereits aus dieser ersten geografischen Übersicht wird deutlich, dass die Akteure besonders aus Ostasien, den USA und Europa mit

Deutschland stammen.

China P.Rep. 1054 South Korea 477 Japan 386 United States of America 375 Germany 148 European Patent Office 75 Taiwan 63 United Kingdom 49 WIPO 39 France 36 Russian Federation 7 Australia 6 India 6 Canada 5

Abbildung 1: Top 14 Anmeldeländer für Dünnschichtdeposition seit 2010 (Ausschnitt aus Patbase)

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Anmelde- und Erteilungskennzahlen 2010-2013:

Bei der Betrachtung der Anmelde- und Erteilungskennzahlen ist es nur sinnvoll

den Zeitraum bis 2013 zu betrachten, da Anmeldungen ab Oktober 2013, zum

Zeitpunkt der Recherche, größten Teils unveröffentlicht sind

Die Anmeldezahlen befinden sich auf einem hohen und stabilien Niveau und

werden wohl auch für das Jahr 2013 wieder eine Anzahl um die 1500 herrum

erreichen. Damit ist davon auszugehen, dass wesentliche Grundlagen der

Technologien und verschiedenen technischen Ausführungen bereits zum Patent

angemeldet sind, die Dünnschichtdepositionstechnologien für OE sich jedoch noch

in einem so frühen Entwicklungsstadium befinden, dass die Technologiereifephase

noch nicht durchschritten wurde, sondern nach der Erstanwendung der

verschiedenen Technologien, diese intensiv weiter entwickelt und optimiert

werden, um neue Applikationsfelder zu erschließen und damit Zukunftsmärkte zu

generien.

Gleichzeitig zeigt sich durch die stark ansteigende Anzahl der Patenterteilungen,

auf geschätzte 900 Stück alleine für 2013, dass die

Dünnschichtdepositionstechnologien einen großen Wirtschaftswert darstellen und

die Wachstumsmärkte mit hoher Agressivität entwickelt, erobert und verteidigt

werden.

Abbildung 2: Anmelde- und Erteilungskennzahlen 2010-2013 (Ausschnitte aus Patbase)

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Patentverhalten der Top 25 Anmelder seit 2010:

Die Patentierungs- und, damit die

verbundene, Geschäftsstrategie, ist je nach

Anmelder sehr verschieden.

Wie aus der Abbildungs rechts zu

entnehmen, verfügen besonders Samsung,

Semiconductor Energy Lab, University

Princeton und LG Display Co Ltd. über eine

offensive Patentstrategie.

Die Patentstrategien der übrigen

Konkurrenten lassen sich als überwiegend

strategisch-offensiv bis hinzu teilweise

defensiv beschreiben.

Eine große Anzahl von Patent-

anmeldungen, insbesondere von erteilten

Patenten stellt als „Patentschirm“ in der

Regel eine hohe Marktbarriere mit einem

hohen Risiko, besonders für

verhältnismäßig kleine Wettbewerber dar.

Abbildung 3: Patentverhalten der Top 25 Anmelder (Ausschnitt aus Patbase)

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Seite 10

Übersicht der gruppierten Technologietreffer aus der Recherche seit 2010:

Bereits auf den ersten Blick wird durch die visuelle Diagrammauswertung aus der oberen Abblidung deutlich, dass viele Hochtechnolgien wie

z. B. Verdampfungsquellen, Vakuumkammern, Maskentechniken, Chemische Gasphasenabscheidung für die verschiedensten Materialien wie

Organik, TCO, Kohlenstoffnanoröhrchen zur Herstellung von OE wie OLED, OPV, OFET in der Treffermenge der Recherche enthalten sind.

Besonders interessant sind die Treffer auch in Hinblick auf „Mass Production“, „Gas Barrier“ und „Three Dimensional“.

Abbildung 4: Übersicht der gruppierten Technologietreffer aus der Recherche seit 2010 (Ausschnitte aus Patbase)

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Seite 11

Da nicht alle Patentdokumente gesichtet werden können, sollen zumindest überblicksartig einige Forschungsschwerpunkte identifiziert werden,

die vielleicht von zukünftiger Bedeutung sind.

Insbesondere fallen folgende Entwicklungsbereiche auf:

In der Vakuumtechnik z.B. „Vapor Depositon Mask“

Im Bereich der Verdampfer: Düsen, Erwärmungsvorrichtungen, Tiegel und Linearverdampfer

Allgemein Coating und Vakuumkammersysteme

Abbildung 5: Details der Übersicht der gruppierten Technologietreffer aus der Recherche seit 2010 (Ausschnitte aus Patbase)

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Weiterhin wurde offensichtlich intensiv an folgenden Technologiebereichen gearbeitet:

Herstellungsverfahren für dreidimensionaler OE, zum Teil auch mit Nanopartikeln

Nano Wires für OLED

Transparente leitfähige Schichten aus Nanoröhrchen

Herstellung von Organischen Transistoren aus Nanoröhrchen

Herstellung von Barriereschichten mittels Atomlagendeposition

Massenproduktionsprozesse mit hohem Durchsatz, insbesondere auf Substraten

die flexibel sind oder aus Glas bestehen

Diese bisherige Übersichtsanalyse spiegelt jedoch großtteils einen Blick in die Vergangenheit

wieder, deshalb werden nachfolgend die zuletzt veröffentlichen Entwicklungen auf veränderte

F&E-Schwerpunkte hin untersucht.

Abbildung 6: Fortsetzung der Details der Übersicht der gruppierten Technologietreffer aus der Recherche seit 2010 (Ausschnitte aus Patbase)

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Seite 13

Situation im aktuellsten veröffentlichten Zeitraum von 01/2013 bis 09/2013:

Sehr interessant ist, dass Deutschland als Entwicklungsstandort im betrachteten Technologiebereich gegenüber Südkorea in den ersten 9

Monaten des Jahres 2013 weiter zurückgefallen ist, wenngleich die Position gegenüber den US-Wettbewebern im Verhältnis, zum

Gesamtbetrachtugnszeitraum seit 2010, deutlich verbessert werden konnte. Die chinesischen Anmeldekennzahlen können aufgrund staatlicher

Subventionen für Patentanmeldungen und deren oftmals geringen Qualität nicht ohne Weiteres mit denen der anderen Anmelderländer

verglichen werden.

Abbildung 7: Top 14 Anmeldeländer nach Priorität von 01/2013 bis 09/2013 (Ausschnitte aus Patbase)

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Gut zu erkennen ist, dass 2013 neue Technologieschwerpunkte hinzugekommen sind:

Einsatz von Graphen

Silber Nanodraht

Niedrigtemperaturprozesse

Verstärkter Einsatz von Vakuumtechnologien sowie Atomlagendepostion

Abbildung 8: Überblick über die Technologietreffer von 01/2013 bis 09/2013 (Ausschnitte aus Patbase)

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Situation im nur teilweise veröffentlichten Zeitraum ab 11/2013:

Größtenteils stellen die teilweise veröffentlichten Patentliteraturanmeldungen ab 11/2013 chinesiche Entwicklungsarbeiten dar, dennoch sind

die Trends zu den hochaktuelle F&E-Schwerpunke sehr interessant:

Intensive Arbeiten an Verdampfungsquellen

Schutzschichten auf Parylenebasis

Drucktechnologien sowie Rolle-zu-Rolle

Einsatz von Graphen sowie Nanoröhrchen

Herstellung von Perowskitbassierter Elektronik

Abbildung 9: Überblick über die Technologietreffer ab 11/2013 (Ausschnitte aus Patbase)

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Seite 16

Gegenüberstellung der Top-Anmelder seit 2010 (links) und 01/2013 bis 09/2013 (rechts):

Abbildung 10: Gegenüberstellung der Top-Anmelder (Ausschnitte aus Patbase)

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Auswertung von Stichproben aus der Treffermenge der Patentrecherche:

Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

Thermisches Verdampfen OE Vielzahl von Verdampferquellen für Filmdicken zwischen 1 und 10.000nm Auf- und Abwickler befinden sich ebenfalls

in einer Vakuumkammer Trommel für Rolle zu Rolle Aktive Kühlung des Substrates

verschiedene Monomerarten sind flexibel aus mehreren Verdampferquellen aufbringbar

geringst möglichen Betriebskosten zur Aufrechterhaltung des Vakuums

hoher Durchsatz - hohen Anschaffungskosten - mittlere bis hohe Wartungskosten

Kojima Press Industry Co., Ldt (JP)

23.03.2011, EP 2503024 A1

OE Massenproduktionsprozess von 1,3m breiten Substraten durch mehrere Verdampfungsquellen

Kostengünstige Beschichtung großer Areale

GJM CO Ltd. (KR) 26.04.2013, JP2014214379 A2

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

OLED Abscheidung unter Verwendung einer Feinmetall-Maske zur Strukturerzeugung der organischen Materialschichten

Herstellung strukturierter Organischer Schichten

- hoher technischer Aufwand, da

Feinmetallmasken schwierig zu handhaben sind, weil sich diese schon alleine aufgrund ihres Eigengewichtes verzerren

Samsung Display Co., Ldt. (KR)

17.06.2013, DE 102013223214 A1

OLED Vielzahl von Verdampfungsquellen Vakuumkammern Rolle-zu-Rolle

hoher Reinheitsgrad im Prozess

Nitto Denko Corporation (JP)

17.05.2012, EP 2770803 A1

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

Substrate wie für OE Bedampfer mit Vakuumkammer sowie Transportvorrichtung

Temperierbarkeit des Substrates

hohe Verdampfungsrate Homogentität der Schichtdicke

FHR Anlagenbau GmbH (DE)

04.09.2013, DE 102013109663 A1

OLED Verdampfer wird per Aerosolstrom versorgt

homogenerer Dampfzufluss zur Prozesskammer

Aixtron SE (DE) 22.06.2011, DE 102011051260 A1

OE und andere kühlbare Trommel

mehrere Verdampfungsquellen Vakuumkammer

HITACHI (JP) 2012, JO 2012248486 A

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

OLED Kompletsystem mit Verdampfern, Rolle-zu-Rolle für flexible Substrate, Schattenmasken, Laser, Vakuumkammer

hohe Produktivität

- hohe Anschaffungskosten

KIM MYUNG HEE (KR)

02.12.2013, KR102013139821A

OE, OLED und andere Mikrowellenstrahlung als Heizquelle

Aufbringung von Nanopartikeln und Kohlenstroff-Nanoröhrchen

Zersetzung des organisches Materials

kann durch gezielte Steuerung der Mikrowellenstrahlung minimiert werden

Von Ardenne Anlagentechnik GmbH

(DE)

05.02.2010, DE 102010007111 B4

OLED Temperatursteuerung für den Verdampfungsprozess

Sichuan CCO Dosülay Technology

CN103305803A

OLED Inlineanlage mit geringen Herstellungskosten

KIM JIN JUNG (KR) KR 20140133113 A

OE Themisches Verdampfen NITTO DENKO CORP, JP

EP2704533

OLED Thermisches Verdampfen BOROSON MICHAEL L, US HAMER JOHN W, US OLEDWORKS

LLC, US

WO2014110073

OLED Thermisches Verdampfen KR20140055742 Drucken OLED, OPV, OE Vakuumkammern schützen Halbzeug

beim Druckprozess vor Verschmutzungen

MIN CHI HOON (KR) 20.05.2013, KR 101426065 B1

OLED Einsatz von Screen Printing,

Dispenserdruck, Ink-Jet Kombination mit Laserbohren

LG Display Co Ltd. (KR)

US 2014152912 A1

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

OPV Sprühen, Slot-Die, Dip-coating, Ink-Jet, Screen-Printing

Lithographie

Atomic Energy Council-Insitute of

Nuclear Energy Research (TW)

27.06.2013, US 2015004735 A1

OE: OFET, OPV, OS, O.-Touchscreen, OLED

und andere

Drucken oder Sprühen von Schichten aus Kohlenstoff-Nanaröhchen

The University of Surrey (GB)

04.12.2012, WO 14086778 A1

OE: OFET, OLED, OPV...

Ink-Jet für Siliziumdioxid-Partikel Merck Patent GmbH (DE)

15.10.2013, WO 2015055280 A1

OLED Drucken OSRAM OLED GMBH, DE

DE102013106508

OLED Drucken (kein Slot-Die) SAMSUNG DISPLAY CO LTD, KR

US2014346465

OLED Ink-Jet SAMSUNG DISPLAY CO LTD T, KR

US2015048318

OPV Slot-Die ATOMIC ENERGY COUNCIL, TW

US2015056735

OPV, OLED, OE Drucken, Sprühen P P HOLDINGS INC SA, CA

WO14089708

OPV Slot die, Screen printing, Corona, Rolle-zu-Rolle

SHENZHEN SHINING AUTOMATION

EQUIPMENT CO LTD UNIV CENTRAL

SOUTH

CN103921541

OLED Ink-Jet KATEEVA INC, US WO2014113079 OE Drucken (Nanoink) UNIV NANJING

POSTS & TELECOMM

CN103214900A

OE Sprühen (für Mikrostrukturen) POSTECH ACAD IND FOUND

DE112011103397T5

OLED Ink-Jet CAMBRIDGE DISPLAY TECH, GB

GB2509497

OE Drucken und Sprühen ALLIANCE SUSTAINABLE ENERGY, US

US2014256081

OE Drucken von Nanowires

SABIC GLOBAL TECHNOLOGIES BV,

NL

US2015037517

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

Atomlagendeposition OE und andere kontinuierlicher ALD-Prozess der Rolle-zu-Rolle fähig ist

UChicago Argonne, LLC (US)

24.07.2013, US 20150031157 A1

OLED ALD für Barierre APPLIED MATERIALS INC, US

WO2014159267

OE ALD VEECO ALD INC, US WO2014176077 Mix OPV Sputtern, ALD, CVD Research & Business

Foundation Sungkyunkwan University (KR)

23.01.2013, US 2014202527 A1

OLED, OE und andere Gasdeposition mittels einer Vielzahl von Düsen, flexibel ausgestaltet mit CVD, ALD, etc.

Samsung Display Co., Ltd. (KR)

10.09.2013, US 2015072453 A1

OPV und OLED Drucken, Siebdruck, Trintenstrahldruck Bedampfen im Vakuum

Heliatek GmbH (DE) 15.10.2012, WO 14060912 A1

OE, OFET Slot-Die Dip coating Ink-Jet Screen Printing Offset Lithograpie

Thermisches Verdampfen ggf. unter

Einsatz von Schattenmasken Lithografie

Smartkem Limited (GB)

29.11.2012, WO 14083328 A1

OPV mit OLED Vakuum Deposition Nassfilmdeposition / Drucken

3M Innovative Properties Company

(US)

06.05.2013, WO 14182589 A1

OE Graphenfilm erzeugen mittels, Vakuum Deposition, Sputtern, Drucken, Sprühen

EFACEC Engenharia A.A. (PT)

25.09.2013, WO 15044881 A1

OE Sputtern, Thermisches Verdampfen, CVD, ALD für Kupfer & Graphen

ACADEMIA SINICA, TW

US2013001515

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Dünnschichtdepositions-Technologie

Hauptanwendung Auszug von Attributen mit Stärken und Schwächen

Entwickler Stand, Anmeldernummer sowie ggf. Skizzenausschnitt

Sonstige Elektroden für OLED, OPV...

Auftrag von Silber-Nanowires Herstellung transpartenter leitfähige

Schichten mittels ultradünner Silbernanodrähte

2015, KR20150011410A

OE (OLED, OFET...) Abscheidungsprozess mit Lithographie

Kombinations aus Abscheidungsprozess

sowie mit einem Fotolack und ggf. Lithografie ermöglicht kostengünstige Herstellung von strukturierter OE

- verhältnismäßig aufwändige

Prozessschritte und komplex

Fraunhofer-Gesellschaft (DE)

28.03.2014, DE 102013205714 A1

OLED Magnetron AREESYS TECHNOLOGIES INC,

US

US2014251799

Tabelle 6: Auswertung von Stichproben der Patentrecherche

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3.3 Auswertung der Stärken und Schwächen der Technologien

Die Stärken und Schwächen der einzelen Depositionstechnologien hängen von ihren

Aufgaben ab. Beispielsweise eignet sich ALD besonders für Barriereschichten und

Sputtern besondern für TCO-Schichten. Wobei sich viele der Depositionstechnologien,

insbesondere innerhalb der Gruppen von vakuumbasierten Verfahren und der

nassfilmbasierten Verfahren gegenseitig stark substituieren und mit komplexen Vor- und

Nachteilen aufwarten, die beispielsweise von Bauartarchitektur der OE, Strukturgröße,

Anzahl der Layer sowie Material abhängen. Besonders die gewünschte

Leistungsfähigkeit, Leistungsaufnahme, Lebensdauer und Kosten der OE-Bauteile

beeinträchtigen die Wettbewerbsfähigkeit einer Dünnschichtdepositionstechnologie

wesentlich, sodass es äußerst problematisch ist, eine Aussage zu deren zukünftigen

Potenzialen zu treffen.

Möglich erscheint, dass kostengünstige Massenprodukte mit niedrigen bis mittleren

Leistungsmerkmalen tendenziel per Nassfilmverfahren hergestellt werden, wohingegen

für hochwertige Produkte wie langlebige OLED und OPV die aufwändigeren

vakummbasieren Prozesse zum Einsatz kommen, die komplexere, mehrschichtige

Strukturen höherer Reinheit erlauben.

Am wahrscheinlichsten ist es, dass in der Massenproduktion jeweils für eine bestimmte

Schicht das Dünnschichtdepositionsverfahren eingesetzt wird, welches die technischen

Anforderungen in ausreichendem Maße erfüllt und dabei die günstigsten

Herstellungskosten aufweißt. Belegt wird dies durch eine Reihe von Patentanmeldungen

welche in einem Produktionsverfahren sowohl vakuumbasierte als auch nassfilmbassierte

Prozesse vereinen.

Anhand der aktuellen Patentliteratur ist es möglich F&E-Ergebnisse abzuleiten, welche für

die beteiligten Technologiewettbewerber in aller Regel einen strategischen Wert

darstellen. Im vorliegenden Fall können die Dünnschichtdepositionstechnologien den

konkreten Produktgruppen zugeordent werden, sodass sich zusätzlich zu den schon

getroffenen grundsätzlichen Anwendungsfeldern und Kostensituation auch statistische

Aussagen über die grundsätzliche Bedeutung und Verbreitung der einzelnen

Dünnschichtdepositionstechnologien treffen lassen.

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Dünnschichtdepositions-Technologie:

Technologieattribute (Stärken und Schwächen): Hauptanwendungsgebiet: Bewertung auf Erreichbarkeit der

technischen Anforderungen für das

Hauptanwendungsgebiet: Thermisches Verdampfen Herstellung dünner Schichten ab 1 nm aus

verschiedenen Materialien Unbegrenzter Schichtaufbau möglich Mehrere Verdampfungsquellen, auch mit

unterschiedlichen Stoffen, sind koppelbar Dotierbarkeit ist sehr gut einstellbar hohe Homogenitäten erzielbar für Monomere und Metalle

- Nicht für Polymere und andere hitzeempfindliche

Stoffe geeignet

OLED OPV Sonstige OE hauptsächlich für

Funktionsschichten und Elektroden

Grundsätzlich für eine Vielzahl anderer Anwendungen wie Folienbeschichtung, Glasbeschichtung etc. verwendbar

4

CVD Gasstrom führt zu einer Reaktion an der Oberfläche, unter geringen Druck

Extrem hohe Homogenitäten erzielbar

- Durch das Prinzip der chemischen Reaktion sind

die Möglichkeiten des Stoffeinsatzes und damit Schichtaufbaus eingeschränkt

- Diffussionsprozesse bei hohen Temperaturen können problematisch sein

OE wie OPV und OLED

1

ALD mind. 2 Oberflächenreaktionen die durch Molekülfragmente erzielt werden

Flächige Schichten erzeugbar dünne Barriereschichten <10 nm erzielbar gut Rolle-zu-Rolle fähig

- Einschränkung im Stoffeinsatz - Stapelfehler und Fehlstellen

OLED, OPV und sonstige OE

hauptsächlich für Barriereschichten

3

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Dünnschichtdepositions-Technologie:

Technologieattribute (Stärken und Schwächen): Hauptanwendungsgebiet: Bewertung auf Erreichbarkeit der

technischen Anforderungen für das

Hauptanwendungsgebiet: Sputtern sehr effizientes Beschichtungsverfahren

- kann nur für Substrate ohne Organische Schichten

verwendet werden, da es diese zerstört, oder es ist eine mit Aufwand verbundene Schutzschicht nötig

OPV, OLED und sonstige OE

hauptsächlich für TCO auf Substraten

4

Slot-Die für große Flächen sehr hohe Durchsatzraten sehr gut geeignet für Rolle-zu-Rolle Verfahren auch für Polymere geeignet

- Mehrfachschichten i. d. R. nur mittels

unterschiedlicher Lösungsmittel oder Zwischenschicht realisierbar

- Homogenität kann Schwierigkeiten bereiten - Strukturierung erfordert aufwändige technische

Mittel

OPV, OLED und teilweise sonstige OE

insbesondere Funktionsschicht

2

Siebdruck für wiederkehrende Strukturen mittlere Durchsatzraten

- max. Auflösung ist auf ca. 25 µm begrenzt, dadurch

fragwürdig wie weit diese Technologie für zukünftige OE skalierbar ist

OLED, OPV und sonstige OE

1

Ink-Jet sehr flexibel durch eine Vielzahl von individuell ansteuerbaren Düsen

hohe Durchsatzraten max. Auflösungen von ca. 10 µm

- Minimale Tröpfchengröße ist limitiert

OLED, OPV und sonstige OE

insbesondere Funktionsschicht 3

Tauchbeschichten - äußerst grobes Verfahren OPV, OLED und sonstige OE

0

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Dünnschichtdepositions-Technologie:

Technologieattribute (Stärken und Schwächen): Hauptanwendungsgebiet: Bewertung auf Erreichbarkeit der

technischen Anforderungen für das

Hauptanwendungsgebiet: Sprühen für große Flächen

sehr hohe Durchsatzraten sehr gut für Rolle-zu-Rolle

- schwierig zu strukturieren - Schwierigkeiten bei der Homogenität können

auftreten

OPV, OLED und sonstige OE

1

Lithographie für sehr feine Strukturen, dadurch möglicherweise gut skalierbar für zukünftige OE

- geringe Durchsatzraten

- OPV, OLED und sonstige OE

2

Legende zur Erreichbarkeit der technischen Anforderungen: 0 = sehr schwer; 1 = schwer; 2 = durchschnittlich; 3 = gut; 4 = sehr gut

Tabelle 7: Bewertung der Leistungsmerkmale der Technologien auf Erreichbarkeit der technischen Anforderungen

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4 Applikationsanalyse

Dünnschichtdepositionstechnologien für OE sind speziel für die OE konzipiert. Auch wenn

sich die einzelnen Verfahren teilweise zur Beschichtung von Architekturglas oder

Druckerzeugnisse eignen, stehen sie primär nicht mit den klassischen Beschichtungs-

und Druckverfahren in Konkurrenz. Vielmehr stellen die

Dünnschichtdepositionstechnologien für OE eine Weiterentwicklung klassischer

Technologien dar, die durch Spezialisierung auf die Anforderungen OE zugeschnitten

wurden.

Deshalb können für diese „spezialisierten“ Technologien im wesentlich auch nur

Applikationen betrachtet werden, welche ansatzweise auf organischen Materialien und

ggf. einer elektrischen Funktion beruhen.

4.1 Sammlung existierender Applikationen

OLED-Displays

OLED-Beleuchtung

OPV

Organische Batterien

OFET

Dünnschicht Transistoren

Organische Sensoren

Systeme aus mehreren OE-Komponenten

4.2 Identifikation potenzieller Applikationen aus interner Sicht

Zur Identifizierung potenzieller Applikationen aus interner Sicht wurden OES-Experten

befragt:

Organische Prozessoren

Organische Speicher

OLED’s auf Kartons und Verpackungen

Organische Molekülschalter

4.3 Identifikation potenzieller Applikationen aus externer Sicht

Die Identifikation potenzieller Applikationen aus externer Sicht wird durch eine

Patentrecherche umgesetzt, welche auf Daten ab 2013 basiert:

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Abbildung 11: OE ersten 3 Quartale 2013 (Ausschnitte aus Patbase)

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Abbildung 12: OE ersten ab 2014 (Ausschnitte aus Patbase)

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Aus den Patentrecherchen sind folgende neue OE-Produkte / -Trends erkennbar:

Dreidimensionale Bauarchitekturen

Einsatz von Formgedächtnispolymeren

Perowskit Solarzellen

Polymerlithium Batterien

Potenziell könnten damit die wesentlichen Baugruppen für autarke Computersysteme wie

z. B. für ein autarkes Outdoor-Smartphone aus OE bereitgestellt werden. Zudem könnten

durch dreidimensionale Bauarchitekturen neuartige elektronische Bauelemente realisiert

werden, die möglicherweise statt auf dem Binärsystem, auf einer alternativen und

schnelleren Rechenlogik basieren können.

4.4 Zusammenfassung aller Applikationsideen

Existierend: Potenziell (interne Sicht): Potenziell (externe Sicht:) OLED-Displays OLED-Beleuchtung OPV Organische Batterien OFET Dünnschicht

Transistoren Organische Sensoren Systeme aus

mehreren OE-Komponenten

Organische Prozessoren

Organische Speicher OLED’s auf Kartons

und Verpackungen Organische

Molekülschalter

Dreidimensionale Bauarchitekturen

Einsatz von Formgedächtnis-polymeren

Perowskit Solarzellen Polymerlithium

Batterien

Die Vielzahl der unterschiedlichen OE mit individueller Bauartarchitektur und Materialien

erfordert eine hohe Flexibilität an die einzelnen Dünnschichtdepositionstechniken, welche

nur durch den Einsatz unterschiedlicher Technologien realisiert werden können.

Insbesondere sind folgende Anforderungen zu erfüllen:

Flächiger Schichtaufbau im nm-Bereich, bei hoher Homogenität

Teilweise strukturierter Schichtaufbau mit Auflösungen zwischen ca. 20 µm bis hin

in den nm-Bereich nötig

Mehrere Schichten aus unterschiedlichen Materialien, die teilweise dotiert sein

müssen, um komplexe dreidimensionale Bauteile herzustellen

Effektive Barriereschichten, um langlebige Bauteile herzustellen

Tabelle 8: Zusammenfassung aller Applikationsideen

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4.5 Ermittlung von Marktkennzahlen für die Applikationen

Anhand der Marktkennzahlen für die wesentlichsten Applikationen werden mithilfe von OES-Experteneinschätzungen und der Patentliteratur die

Marktanteile der Dünnschichtdepositionstechnologien objektiv geschätzt. Dabei beruhen im Einzelnen die Experteneinschätzung auf einer Skala von

0 bis 3 Punkte, die Bewertungen aus der Patentliteratur auf Häufigkeiten des Technologieeinsatzes, insbesondere in den Patentansprüchen und

Ausführungsbeispielen, aus der ermittelten Stichprobe und die Marktdaten in Mrd. $ auf Gegenrechnung und teilw. Validierung der angegebenen

Marktstudien:

Technologie Quelle OLED OPV Sonstige OE

OFET, OS…

Technologiemarktanteile 2015

(je 50% auf Basis

Experteneinschätzung und

Patentliteratur)

Technologiemarktanteile

2020

(auf Basis der

Patentliteratur)

Thermisches Verdampfen Patentliteratur 19 11 9 14,18 30,73

Experteneinschätzung 3 3 3

CVD Patentliteratur 2 3 2 2,92 3,79

Experteneinschätzung 1 1 1

ALD Patentliteratur 5 5 4 4,17 8,95

Experteneinschätzung 1 1 1

Sputtern Patentliteratur 2 3 2 0,83 3,79

Experteneinschätzung 0 1 0

Slot-Die Patentliteratur 12 15 7 2,20 8,82

Experteneinschätzung 2 3 0

Siebdruck / Screen Printing Patentliteratur 12 12 7 2,01 8,16

Experteneinschätzung 1 1 2

Tintenstrahl / Ink-Jet Patentliteratur 17 12 8 2,69 9,64

Experteneinschätzung 1 2 3

Tauchbeschichten / Dip-

Coating

Patentliteratur 1 2 1

0,14 1,08

Experteneinschätzung 0 0 0

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Sprühen Patentliteratur 5 6 4 0,94 4,08

Experteneinschätzung 1 1 0

Lithographie Patentliteratur 2 3 2 3,63 5,72

Experteneinschätzung 1 0 1 2,92

Marktanteil 2015 in Mrd. $ Potenziell gedruckte OE

inkl. sonstiger gedruckter

Elektronik*

2,2 3,2 3,3

Nichtgedruckte OE; reine

OPV; Schätzung für sonstige

OE**

25 0,0003 0,03

Marktanteil 2020 in Mrd. $ Potenziell gedruckte OE

inkl. sonstiger gedruckter

Elektronik*

10,4 11 12,3

33,7 37,49

Nichtgedruckte OE; reine

OPV; Schätzung für sonstige

OE**

41 0,05 10

51,05 51,05

*potenziell gedruckte Organische Elektronik und Nicht-Organische Elektronik, bei Photovoltaik ohne Cadmiumtelluried- und Siliziumzellen3

**Nur nichtgedruckte OE (abzgl. Marktanteil für gedruckte Elektronik)4

3 Vgl. CIMA Institut für Regionalwirtschaft GmbH: Realisierungsstudie„Innovation und Produktion Organischer Elektronik am Standort Heidelberg“. 2014, S.21 4 Vgl. IDTechEx: Printed, Organic & Flexible Electronics Forecasts, Players & Opportunities 2015-2025 in Verbindung mit Organic Photovoltaics (OPV) 2013-2023: Technologies, Markets, Players

Tabelle 9: Marktkennzahlen

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5 Potenzialermittlung

Es ist nicht zwangsweise notwendig zwischen den verschiedenen Produktgruppen und

Märkten zu unterschieden, weil die OE von OLED über OPV bishin zu Organischen

Speichern, bei allen spezifischen Anforderungen an dern Herstellungsprozess auch große

Gemeinsamkeiten bzgl. der einsetzbaren Dünnschichtdepositionstechnologien aufweist.

Da Beispielsweise eine Dünnschichtdepositionstechnologie mit der OLED hergestellt

werden oder OPV auch die grundlegenden Werkzeuge bereit stellt, um andere OE

herzustellen. Die Technologien müssen aufgrund der Bauartverwandtheit lediglich

hinsichtlich Bauartarchitektur und einzusetzender Materialien angepasst werden, was

durch den bis dahin durchlaufenen Erfahrungsprozess wesentlich erleichtert wird.

Zur Bewertung des Gesamtpotenzials ist es deshalb zweckmäßig, das Potenzial jeder

einzelnen Dünnschichtdepositionstechnologie für die OE (OLED, OPV, OFET, OS...) zu

ermitteln.

Hierfür wird die Portfoliotechnik mit den Dimensionen Marktattraktivität (Potenzial) und

Relative Wettbewerbs- und Ressourchenstärke (Machbarkeit)5 genutzt. Aufgrund der

großen Bedeutung der Auswahl der einzelnen Kriterien und deren Gewichtung wird dabei

wie folgt vorgegangen:

Dimension Marktattraktivität (Potenzial):

50% für Marktgröße auf Basis 2015, für maximale Fehlertoleranz

25% für Marktwachstum bis 2020 (geringe Gewichtung da sehr Fehleranfällig)

25% für die erwartete Intensität des Wettbewerbs

Dimension Relative Wettbewerbs- und Ressourchenstärke (Machbarkeit):

40% für die Erreichbarkeit der technischen Anforderungen

30% für den Stand des Know-hows (Kompetenzen, Wiss.-Nachwuchs, Patente...)

30% für die Höhe und Kontinuität des F&E-Budgets

Zu Erstellung des Potenzial-Portfolios werden nachfolgend noch Wettbewerbsintensität,

Stand des Know-hows und F&E-Budget verglichen.

5 Vgl. Spat, Linder, Seidenstricker:Technologiemanagement. 2011, S.66, 118 und 123

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Wettbewerbsintensität (Anzahl&Stärke der Wettbewerber)

Bewertung Stand des Know-hows (Kompetenzen, Mitarbeiter, Patente)

Bewertung F&E-Budget (Höhe und Kontinuität)

Bewertung

Thermisches Verdampfen

- Große Anzahl starker Wettbewerber insb. in Asien und KR

1

Hoher Kompetenzstand, durch mehrere spezialisierte Unternehmen und Forschungseinrichtungen

Qualifizierter Nachwuchs aus Uni’s

- Vergleichsweise wenige

Patente

3

Einzelne Projekte lassen sich gut öffentlich fördern

- im wesentlichen

Standardförderung

- Begrenzte finanzielle Mittel, da keine finanzstarken Großkonzerne

1

CVD geringe Anzahl asiatischer Wettbewerber

3 - kein Spezial-Know-how

identifizierbar 1 - Finanzstarke Globalplayer

wie Samsung 1

ALD - Mehrere Wettbewerber in USA und Asien

2 - kein Vorsprung ersichtlich

2 - gute Finanzausstattung der

Wettbewerber 1

Sputtern wenige Player 3 Vorhandenes Know-how und langjährige Erfahrung

3 o vergleichbar

2

Slot-Die - Vielzahl an Wettbewerbern insbesondere in Asien

1 o F&E Aktivitäten erscheinen

vergleichbar 2 Gute Förderbedingungen 3

Siebdruck - Starke Wettbewerber aus Asien

1 o F&E Aktivitäten erscheinen

vergleichbar 2 Gute Förderbedingungen 3

Ink-Jet - mehrere starke Wettbewerber insb. aus Asien

0

Zunehmend starke Aktivitäten

Spezialisierte Unternehmen, qualifizierter Nachwuchs

- Vergleichsweise geringe Anzahl an Mitarbeitern und Patenten

2

Sehr gute Förderbedingungen

4

Tauch-beschichten

wenige Wettbewerber 3

o nicht erkennbar 2

o keine speziellen Förderprogramme ersichtlich

1

Sprühen o viele Wettbeweber 2 o nicht erkennbar 2 o vergleichbar 2 Lithographie wenig spezialisierte

Wettbewerber 3 hohe Kompetenz 3

o vergleichbar 2

Legende zur Bewertung der einzelnen Faktoren aus OES-Situation im Globalvergleich: 0 = klarer Nachteil; 1 = eher Nachteil; 2 = durchschnittlich; 3 = eher Vorteil; 4 =klarer Vorteil

Tabelle 10: Bewertung der Wettbewerbsintensität, Know-how und F&E-Budget aus OES-Situation

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5.1 Potenzialportfolio

Das Potenzialportfolio wird auf Grundlage der erarbeiteten Daten berechnet und nach der

bewährten Methodik der 9-Feldermatrix, mit einer auf 6 Kriterien übersichtlich begrenzten

Anzahl von sorgfältig ausgewählten und gewichteten Einflussfaktoren, erstellt:

Technologien \ Kriterien mit Gewichtung:

Marktattraktivität Relative Wettbewerbs- und Ressourchenstärke

Markt-größe

Markt-wachstum (von 2015 bis 2020)

Erwartete Intensität des Wett-bewerbs

Erreichbarkeit der technischen Anforderungen

Stand des Know-hows

F&E-Budget

50% 25% 25% 40% 30% 30% Thermisches Verdampfen 14,18 217% 1 4 3 1

CVD 2,92 130% 3 1 1 1 ALD 4,17 215% 2 3 2 1 Sputtern 0,83 457% 3 4 3 2 Slot-Die 2,2 401% 1 2 2 3 Siebdruck 2,01 406% 1 1 2 3 Ink-Jet 2,69 358% 0 3 2 4 Tauch-beschichten

0,14 771% 3 0 2 1

Sprühen 0,94 434% 2 1 2 2 Lithographie 3,63 158% 3 2 3 2

Tabelle 11: Daten für Potenzialportfolio

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Abbildung 13: Potenzialportfolio

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5.2 Analyse des Potenzialportfolios nach Fallgruppen

1. Dunkel-Grün markiert:

Thermisches Verdampfen ist die erfolgversprechenste Dünnschicht-

depositionstechnologie für den Markt der OE. Deshalb müssen weiterhin

entsprechende Ressourchen in den Erhalt und Ausbau der eigenen

Marktposition investiert werden.

2. Hell-Grün markiert:

Die Technologie Sputtern stellen eine Stärke im OES-Cluster dar. Weil

auch relativ „kleine“ Märkte sehr profitabel sein können, sollte in diese

Stärke weiter intensiviert werden, um sie auf dem Markt voll auszuspielen.

3. Gelb markiert:

Lithographie, ALD und Slot-Die weisen ausreichend attraktive Märkte auf, in

denen der OES-Cluster durch effektive Technologiestrategien eine

überlegene Stärke sowie Kompetenzen im Vergleich zu Wettbewerbern

aufbauen sollte. Für die Technologie Ink-Jet muss sich durch geeignete

Verteidigungsmaßnahmen, u. a. durch die Errichtung von Barriere- und

Riegelstellungen, auf einen sehr harten Wettbewerb eingestellt werden.

4. Organge und Rot markiert:

Für Siebdruck ist zu prüfen, inwieweit diese Technologie zukünftig benötigt wird und wie ggf. die eigenen Stärken und Kompetenzen effektiv, mit

einem verhältnismäßigen Mitteleinsatz, erhöht werden können. Für die Rot markierten Technologien ist ein Ourtsourcing etc. zu prüfen.

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6 Strategiemöglichkeiten

6.1 Vorwort

Ich möchte auf ein aktuelles und reales Beispiel hinweisen, um die Bedeutung von

strategischen Technologien für die Zukunft und das Wachstum von

Technologieunternehmen deutlich zu machen. Ein Unternehmen aus dem Bereich

Hochtechnologie-Fertigungstechnik für z. B. elektrotechnische Baugruppen, mit mehreren

hundert Mitarbeitern aus Deutschland, verlor aufgrund überraschend schlechter

Auftragszahlen, trotz solider Finanzierungsbasis, innerhalb eines Jahres über 40% seines

Börsenwertes. Ein Jahr zuvor habe ich mich mit dem Leiter des

Technologiemanagements darüber unterhalten, wie man neue Technologien und F&E-

Projekte identifizieren und priorisieren kann. Ich schlug ihm die hier skizzierte

Technologiepotenzialanalyse mit der ganzheitlichen Auswertung von Technologie- und

Applikationspotenzial als bewährte Methode vor. Der Leiter des

Technologiemanagements hilt diesen Ansatz für ungeeignet. Daran wird sehr deutlich,

von welch eminenter Bedeutung es ist, bei der Strategischen Technologieplanung eine

systematische und ganzheitliche Methode, wie die hier vorgestellte, kontinuierlich z.B.

einmal pro Jahr für jedes Unternehmen (im eigentlichen für jede Strategische

Geschäftseinheit) durchzuführen, um sicherzustellen, dass die Unternehmensressourchen

in wettbewerbsfähige Technologien, welche die Besetzung von attraktiven Märkten mit

Zukunftspotenzial erlauben, investiert werden! Ein Versagen oder Einsparen bei diesem

Schritt kann und hat schon vielen Technologieunternehmen den Verlust der

Wettbewerbsfähigkeit, bis hin zum Verlust jeglicher Liquidität gekostet.

Es sei daraufhin gewiesen, dass die hier in Kapitel 3 skizzierte Teil-Methode der

Technologieanalyse nur zu lediglich max. 40% als eine Entscheidungsgrundlage

dienen sollte, da sie im wesentlichen auf einer Analyse des scheinbar aktuellen, jedoch

tatsächlich des vergangenen Standes der Technik beruht. Sie kann nur sehr ungenau

und grob vorhersagen, welche technologischen Entwicklungen sich in den nächsten

Jahren mit welcher Wahrscheinlichkeit durchsetzen könnten. Hierfür muss auf Basis

hochaktueller F&E-Erkenntnisse die eigene Intelligenz angestrengt werden, dazu eignen

sich sehr gut die Instrumente der Technikevolution, welche Gegenstand des TRIZ

Level III sind. Diese eigenen Überlegungen sind für konkrete Produkte und Technologien

anzuwenden und würden den Bearbeitungsaufwand dieser Technologiestudie sprengen,

sie sollten jedoch unbedingt den überwiegenden Teil, mind. 60%, der

Entscheidungsgrundlage für eine zukünftige Technologieausrichtung bilden, da nur

durch den Einsatz der eigenen intellektuellen Fähigkeiten und des Know-hows eines

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Unternehmens / Forschungsinstitution eine gesicherte Vorhersage für die Zukunft, mit

einer erfolgreichen Produktentwicklung, möglich ist.

6.2 Ziele

Übergeordnete Ziele können die nachhaltige Weiterentwicklung mit einem Wachstum

des Clusters an Mitarbeitern, Umsatz, Marktanteil und Wirtschaftlichkeit darstellen,

wobei dies nicht nur die OES-Mitglieder sondern auch die verflochtenen Unternehmen

und Forschungseinrichtungen umfasst.

Um dieses übergeordnete Ziel zu erreichen, können folgender Unterziele mit

Maßnahmen sinnvoll sein:

Technologieführerschaft: Für einzelne Top-Technologien wie Themisches

Verdampfen, Sputtern, Ink-Jet sowie ggf. für Lithographie, ALD und Slot-Die.

Technologiefolger: Für sekundäre Technologien wie ggf. Siebdruck

Erhöhung der OES-Cluster-Stärke: Durch z.B. mehr Verbundprojekte,

Kooperationen, neue Mitglieder oder Strategische Allianzen mit anderen

spezialisierten nationalen oder gar internationalen Wettbewerbern

Informationelle Überlegenheit anstreben: Eigenes oder gemeinsames

Überwachungscenter für Aktivitäten der Wettbewerber, insbesondere F&E-

Projekte, Patentanmeldungen, Veröffentlichungen, Konferenzbeiträge,

Stellenausschreibungen etc. Sowie mögliche neue Technologien kontinuierlich

monitoren.

Kompetenzen erhöhen: Für jede Schlüsseltechnologie spezialisierte

Masterstudiengänge und Promotionsmöglichkeiten in der Region etablieren

Marktpositionen und Know-how schützen: Patentschirme aufbauen,

Informationssicherheit in Hinblick auf elektronische und personelle

Spionageabwehr erhöhen. Sowie Konkurrenz-Technologien entgegenwirken oder

diese ebenfalls „erobern“. Falsche Informationen im Markt streuen, um

Wettbewerber fehlzuleiten.

Fördermittelprogramme: Auf eine gezielte Ausrichtung hinwirken

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6.3 Strategiemöglichkeiten

Grundsätzlich stehen für die Technologiestrategie folgenden Optionen zur Verfügung:6

Innovations-höhe

Zeitpunkt-wahl

Technologie-beschaffung

Technolgie-verwertung

Innovations-führer

- Radikale Innovations-strategie - Hochleistungs-strategie

so, dass ein Vorsprung erzielt wird

-F&E -Technologiekauf -Auftragsforschung -Gemeinschafts-forschung -Strategische Allianz -Lizenznahme -Virtuelles Unternehmen -Joint Venture -Minderheiten-beteiligung -Fusion

-Produkte -Lizenzvergabe -Ausgründen

Innovations-folger

- Anpassungs-strategie - kontinuierliche Modifikations-strategie - Imitations-strategie

genau so weit hinterher, dass es am wirtschaftlich-sten ist

-Produkte -Technologie-verkauf -Verkauf von Unternehmen (-steilen)

Desinvestieren - Wenn keine Gewinne oder ggf. Selbstkosten mehr realisiert werden können oder die Ressourchen für andere Investitionen frei gemacht werden sollen

-Produkte -Verkauf von Unternehmen (-steilen)

Bei allen Strategiemöglichkeiten gelten die folgenden Erfolgsfaktoren:

1. Effektive Konzentration der Ressourchen auf die jeweils entscheidensten

Kern- /Schlüssel- /Top-Technologien

2. Es muss absehbar sein, dass sich mit den Technologien in ausreichend

naher Zeit Gewinne erwirtschaften lassen (wirtschaftlichste Option wählen)

3. Es dürfen nur soviele Finanz- und Humanressourchen investiert werden, wie

notwendig sind, um das angestrebe Ziel zu erreichen

4. Es muss sichergestellt werden, dass die F&E- und Projekt-Teams langfristig

stabil zusammenarbeiten können.

5. Den Prioritäten und Ressourchen entsprechend alles besetzen, was an

Kompetenzen etc. benötigt wird.

6 Vgl. Spat, Linder, Seidenstricker:Technologiemanagement. 2011, S.129 und 147

Tabelle 12: Strategiemöglichkeiten

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6.4 SWOT-Analyse des Vorgehens

Stärken und Schwächen:

Bei aller Sorgfalt muss bedacht werden, dass der Markt der OE ein recht junger und im

starken Wachstum befindlicher ist. Deshalb sind die zur Verfügung stehenden

Marktkennzahlen sehr ungenau und mussten teilweise geschätzt werden. Ebenso können

die Marktanteile der einzelnen Technologien nur grob zugeordnet werden, da hierfür keine

gesonderten Marktkennzahlen verfügbar waren. Erschwerend kommt hinzu, dass die

Endprodukte der OE hauptsächlich von der Verfügbarkeit geeigneter Materialien und

Herstellungsverfahren bestimmt werden, dies gestaltet es schwierig zukünftige

Bauartarchitekturen OE zu bestimmen. Vielmehr hängt das Marktpotenzial einzelner

Technologien von den Fortschritten ab, die in den kommenden Jahren mit den einzelnen

Dünnschichtdepositionstechnologien selbst erzielt werden.

Resultierende Chancen und Risiken:

Bei allen Schwächen aus denen sich Risiken aufgrund einer unsicheren Datenlage

ergeben, bietet die angewendete Portfoliotechnik dennoch einen aussagekräftigen

Vergleich, zwischen der Bedeutung der einzelnen Dünnschichdepositionstechnologien für

die OE sowie den vorhandenen Stärken des OES-Clusters und damit die Möglichkeit,

gezielt eine praktikable Technologiestrategie, für jede einzelne Technologie und einzelnes

Unternehmen, abzuleiten.

Optimierungsvorschläge:

Diese Technologiestudie kann als Grundlage für spezifische Technologiestudien genutzt

werden, die idealerweise in Zusammenarbeit mit Fachexperten und durch Aktualisierung

mit neuen Markt- und Technologiedaten erarbeitet werden sollten, um an Genauigkeit zu

gewinnen.

6.5 Zusammenfassung

Wie bereits dargestellt erscheint für einige Technologien wie das Thermische

Verdampfen, Sputtern und Ink-Jet die Technologieführerschaft eine geeignete

Technologieentwicklungsstrategie zu sein. Für die Technologien Lithographie, ALD und

Slot-Die sollte zumindest eine starke Technologiefolgerschaft bishin zu einer

Technologieführerschaft angestrebt werden. Beim Siebdruck könnte die

Technologiefolgerschaft die wirtschaftlichste Variante darstellen. Die restlichen

Dünnschichtdepositionstechnologien erscheinen aus heutiger Sicht wenig relevant,

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dennoch kann sich dieser Status dynamisch ändern und auch neue Technologien können

zutage treten.

Die entsprechenden Strategien und möglichen Maßnahmen sind über das

Technologieportfolio, die vorgestellten Unterziele mit Maßnahmen sowie grunsätzlichen

Strategiemöglichkeiten aus Tabelle 12 ableitbar.

Dabei muss nicht nur die Situation des OES-Clusters betrachtet werden, sondern

das Hauptaugenmerkt ganz besonders auf die Stärken asiatischer, insbesondere

koreanischer Wettbewerber gelegt werden, welche ganz offensichtlich in einem

strategischen Cluster operieren, mit mehreren sehr finanzstarken Globalplayern,

und in Südkorea als strategischer Technologiebereich von der Regierung geschützt

und gefördert werden.

Da die asiatischen Wettbewerber auch technologisch sehr gut aufgestellt sind, werden in

Kombination mit ihrer Finanzstärkte mehrdimensionale Technologie-, Unternehmens-

und (OES-) Cluster-Strategien notwendig, um sich dauerhaft und erfolgreich im

internationalen Wettbewerb mit asiatischen Clustern, insbesondere dem koreanischen,

behaupten zu können. Unter diesen intensiven Wettbewerbsbedingungen kann nur die

Summe an Maßnahmen aus mehrdimensionalen Strategien zu langfristigen

Unternehmens- und Clusterwachstum in Deutschland führen.

Bei allen vorgestellten Möglichkeiten handelt es sich um generelle Handlungsoptionen,

die im vorliegenden Fall für einen Cluster und nicht ein Einzelunternehmen entwickelt

worden, welches viel stärker als der Cluster vom Erfolg einzelner Technologien abhängt

und die Technologiestrategie deshalb im Einklang mit der übergeordenen

Unterenhmensstrategie bringen muss.

Weil sich die vakuum- und nassfilmbasierten Dünnschichtdepositonstechnologien

gegenseitig nicht vollständig substituieren, wird eine ausreichend starke Diversifikation,

bei gleichzeitiger Spezialisierung innerhalb des OES-Clusters empfohlen, um eine

maximale Flexibilität auf die dynamischen Technologie- und Marktentwicklungen

sicherzustellen.

Die aktuelle Markt- und Technologieentwicklung kann durch einen Monitoringprozess z.B.

vierteljährliches Technologieradar erfasst werden. Hierbei sollten insbesondere asiatische

Veröffentlichungen betrachtet werden und neben Maschinenübersetzungen ggf. auch

menschliche Übersetzungskapazitäten für Koreanisch, Japanisch und Chinesisch

aufgebaut oder genutzt werden.

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Nachtrag:

Kurz nach Fertigstellung der Technologiestudie erfuhr ich von Dr. Robert Harrison, dass

die südkoreanische Regierung festgestellt hat, dass im Bereich der Elektronik und

Nanotechnologien zu wenige Patente von südkoreanischen Unternehmen angemeldet

werden, in deren Folge südkoreanische Unternehmen zu hohe Lizenzgebühren zahlen

müssen, da eine kostengünstige Kreuzlizenzierung oftmals nicht möglich ist. Deshalb

unterstützt die Regierung die Unternehmen jetzt massiv dabei Patente anzumelden.

Die Folge für ausländische und deutsche Unternehmen, im Bereich der OE, kann

deshalb die sein: „Wer nicht reagiert und einen eigenen Patentpool aufbaut ist raus

/ auf Dauer chancenlos.“

Eine Lösung kann sein: Förderprogramme von EU und Bund wie z.B. Horizon 2020

verstärkt einzusetzen, um einen eigenen ausreichenden Patentbestand aufzubauen.

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Seite 45

Literaturverzeichnis

CIMA Institut für Regionalwirtschaft GmbH: Realisierungsstudie„Innovation und

Produktion Organischer Elektronik am Standort Heidelberg“. 2014, S.21

http://www.heidelberg.de/site/Heidelberg_ROOT/get/documents/heidelberg/Objektdatenb

ank/Konversion/PDF/B%C3%BCrgerforen/Kirchheim/13_pdf_Patton_Barracks_CIMA_Re

alisierungsstudie_Organic_Electronics.pdf

Hecker, Dr. K. (Hrsg.): Organic and Printed Electronics: Summary – OE-A Roadmap. 6.

Aufl. Frankfurt am Main, 2015

IDTechEx: Organic Photovoltaics (OPV) 2013-2023: Technologies, Markets, Players:

http://www.idtechex.com/research/reports/organic-photovoltaics-opv-2013-2023-

technologies-markets-players-000349.asp

IDTechEx: Printed, Organic & Flexible Electronics Forecasts, Players & Opportunities

2015-2025: http://www.idtechex.com/research/reports/printed-organic-and-flexible-

electronics-forecasts-players-and-opportunities-2015-2025-000425.asp

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Seite 46

Abbildungsverzeichnis

Abbildung 1: Top 14 Anmeldeländer für Dünnschichtdeposition seit 2010 (Ausschnitt aus

Patbase) ................................................................................................................... 7

Abbildung 2: Anmelde- und Erteilungskennzahlen 2010-2013 (Ausschnitte aus Patbase) 8

Abbildung 3: Patentverhalten der Top 25 Anmelder (Ausschnitt aus Patbase) .................. 9

Abbildung 4: Übersicht der gruppierten Technologietreffer aus der Recherche seit 2010

(Ausschnitte aus Patbase) .......................................................................................10

Abbildung 5: Details der Übersicht der gruppierten Technologietreffer aus der Recherche

seit 2010 (Ausschnitte aus Patbase) ........................................................................11

Abbildung 6: Fortsetzung der Details der Übersicht der gruppierten Technologietreffer aus

der Recherche seit 2010 (Ausschnitte aus Patbase) ................................................12

Abbildung 7: Top 14 Anmeldeländer nach Priorität von 01/2013 bis 09/2013 (Ausschnitte

aus Patbase) ............................................................................................................13

Abbildung 8: Überblick über die Technologietreffer von 01/2013 bis 09/2013 (Ausschnitte

aus Patbase) ............................................................................................................14

Abbildung 9: Überblick über die Technologietreffer ab 11/2013 (Ausschnitte aus Patbase)

.................................................................................................................................15

Abbildung 10: Gegenüberstellung der Top-Anmelder (Ausschnitte aus Patbase) ............16

Abbildung 11: OE ersten 3 Quartale 2013 (Ausschnitte aus Patbase) .............................29

Abbildung 12: OE ersten ab 2014 (Ausschnitte aus Patbase) ..........................................30

Abbildung 13: Potenzialportfolio .......................................................................................37

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Tabellenverzeichnis

Tabelle 1: Vakuum-Dünnschichtdeposition ....................................................................... 2

Tabelle 2: Nassfilm-Dünnschichtdeposition ....................................................................... 3

Tabelle 3: Sonstige Dünnschichtdepositionstechnologien ................................................. 3

Tabelle 4: Mitgliederstruktur OES e.V. .............................................................................. 5

Tabelle 5: Funktionsanalyse ............................................................................................. 6

Tabelle 6: Auswertung von Stichproben der Patentrecherche ..........................................23

Tabelle 7: Bewertung der Leistungsmerkmale der Technologien auf Erreichbarkeit der

technischen Anforderungen .....................................................................................27

Tabelle 8: Zusammenfassung aller Applikationsideen......................................................31

Tabelle 9: Marktkennzahlen .............................................................................................33

Tabelle 10: Bewertung der Wettbewerbsintensität, Know-how und F&E-Budget aus OES-

Situation ...................................................................................................................35

Tabelle 11: Daten für Potenzialportfolio ...........................................................................36

Tabelle 12: Strategiemöglichkeiten ..................................................................................41

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Überblick zur Patentrecherche:

„Dünnschichtdeposition für Organische Elektronik“

Für eigene Anregungen und Ideengenerierung

(PDF ist durchsuchbar)

Stand: Mai 2015

Länder: KR, JP, US, WO, TW, EP, DE

Vollschriften entsprechend abrufbar unter:

http://www.kipris.or.kr/enghome/main.jsp

https://www4.j-platpat.inpit.go.jp/eng/tokujitsu/tkbs_en/TKBS_EN_GM101_Top.action

http://patft.uspto.gov/

https://patentscope.wipo.int/search/en/search.jsf

http://twpat.tipo.gov.tw/tipotwoc/tipotwekm

http://worldwide.espacenet.com/?locale=de_EP

https://depatisnet.dpma.de/DepatisNet/depatisnet?action=einsteiger

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Die Patentrecherche ist nicht vollständig und spiegelt trotz ihres Umfanges nur eine Stichprobe der aktuellsten Anmeldungen wider.

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Teil 1

1) Family number: 58644451 (KR101499019B) © PatBase

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Title: LINEAR SOURCE FOR OLED DEPOSITION APPARATUS

Abstract: Source: KR101499019B The present invention is based on a sequential plurality of positions by the evaporation vessel for evaporating the deposition material in the evaporation module that the operation time of the device by having a structure arranged in series a plurality of significantly increased evaporation vessel by evaporation position (P2) The OLED can be an object to provide a deposition source. OLED deposition source according to the present invention comprises a plurality of evaporation module 100 disposed in a line, each of the evaporation module 100 includes a plurality of ...

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2) Family number: 58133712 (KR101476098B) © PatBase

Title: METHOD OF INSERTING NANO PARTICLES AND MANUFACTURING A PHOTO FUNCTIONAL LAYER USING THE SAME

Abstract: Source: KR101476098B According to a method for inserting nanoparticles, nanoparticles having a hollow structure are aligned on a base, and a preliminary polymer thin film formed of polymer is formed on the

base with the nanoparticles aligned thereon. The upper portion of the preliminary polymer thin film is cured while being pressed so that a polymer thin film is formed on the base.

Assignee(s):(std): UNIV KOREA RES AND BUS FOUND

Assignee(s): KOREA UNIV RESEARCH AND BUSINESS FOUNDATION

; KOREA UNIVERSITY RESEARCH AND BUSINESS FOUNDATION

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3) Family number: 57373066 (TWM486151Y) © PatBase

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Title: ORGANIC SOLAR CELL WITH PLASMA-EFFECT ENHANCING PERFORMANCE PREPARED BY DOPING SILVER NANOPARTICLES

Abstract: Source: TWM486151Y The creation of the Department to provide a plasma doping effects preparation of silver nanoparticles enhanced the performance of organic solar cells, mainly containing an anode layer, a hole transport layer, an active layer, a cathode layer and a plurality of disc-shaped silver Chennai m particles and spherical silver nanoparticles relative form of oleic acid; take innovative unique design, so that the creation by adding silver nanoparticles in cell elements, with silver nanoparticles can increase the absorption of light, and has a more high carrier mobility and the degree ...

Assignee(s):(std): NAT UNIV CHIN YI TECHNOLOGY ; NATIONAL CHIN YI UNIV OF TECHNOLOGY

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4) Family number: 57804287 (DE102014200168A1) © PatBase

Title: HALBLEITENDES NANOPARTIKEL/POLYMER (HYBRID-) MATERIAL ENTHALTEND HALBLEITENDE KOHLENSTOFFHALTIGE KOMPONENTEN SEMI-CONDUCTIVE NANOPARTICLES / POLYMER (HYBRID) MATERIAL CONTAINING HALF OF ORGANIZATION OF CARBON-BASED COMPONENT (Machine translation)

Abstract: Source: DE102014200168A1 Die vorliegende Erfindung betrifft ein halbleitendes Nanopartikel/Polymer (Hybrid-)Material enthaltend halbleitende kohlenstoffhaltige Komponenten, ein Verfahren zur Herstellung dieses Materials, sowie ein Verfahren zur Herstellung einer hybriden organischen Solarzelle aus diesem Material und die nach diesem Verfahren erzeugte Solarzelle. The present invention relates to a semiconducting nanoparticle / polymer (hybrid) material comprising semiconductive carbonaceous components, a method for producing this material, and a method for preparing a hybrid ...

Assignee(s):(std):

BAYER TECHNOLOGY SERVICES GMBH

5) Family number: 55405633 (KR20130139821A) © PatBase

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Title: MANUFACTURING EQUIPMENT USING BELT SOURCE FOR FLEXIBLE OLED AND WHITE OLED

Abstract: Source: KR20130139821A The present invention relates to an apparatus for depositing an organic substance on a lighting or flexible OLED having a large area. The present invention relates to equipment for manufacturing a flexible OLED and a lighting OLED by using a belt-type evaporation device, capable of allowing the belt-type evaporation device having a linear-type heating device to continuously evaporate the organic substance, capable of continuously depositing the organic substance on a flexible substrate or a glass substrate to manufacture the lighting OLED, a white OLED, or the ...

Assignee(s):(std): KIM MYUNG HEE

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6) Family number: 55317232 (KR20130133741A) © PatBase

Title: CRUCIBLE ASSEMBLY AND CONTROL METHOD FOR CRUCIBLE HEATING APPARATUS

Abstract: Source: KR20130133741A The present invention provides crucible assembly comprising: a lifting heater, which is installed in a crucible; a driving unit, which lifts up and down the lifting heater; and a control unit, which controls the operation of the driving unit

depending on the amount of evaporation of organic materials. Also, the present invention provides a method for controlling a crucible heating device, which selectively turns on or off multiple fixed heaters, which are installed vertically at intervals in the crucible, depending on the remaining amount of the organic

materials in ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s):

LIGADP CO ; LIGADP CO LTD

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7) Family number: 58504670 (KR101493983B) © PatBase

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Title: HEATING APPARATUS FOR ORGANIC SOLAR CELL GLASS

Abstract: Source: KR101493983B The present invention relates to a heating device of the organic solar cell substrate. The present invention relates to a heating device of the organic solar cell substrate to heat the substrate with a mask that is seated on one side, are seated on one side of the substrate heating plate for heating the substrate; And is coupled to one side of the heating plate may comprise a cooling plate cooling the heating plate. According to the present invention, the heating plate and the cooling plate is coupled to it can speed up the heating and cooling time of the deposition ...

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8) Family number: 55415640 (KR20130141407A) © PatBase

Title: CARBON NANOTUBE/METAL OXIDE COMPOSITE AND PREPARING METHOD OF THE SAME

Abstract: Source: KR20130141407A Disclosed are a carbon nanotube/metal oxide complex including metal oxide coated on a network or a film of the carbon nanotube by an atomic layer deposition and a manufacturing method thereof. Disclosed are an organic solar cell including the carbon nanotube/metal oxide complex and a manufacturing method thereof. [Reference numerals] (S01) Introducing a carbon nanotube functional group;(S02) Manufacturing carbon nanotube dispersion liquid;(S03) Forming a film of the carbon nanotube or a network;(S04) Transferring formed carbon nanotube or the network;(S05) Coating ...

Assignee(s):(std): KOREA ADVANCED INST SCI AND TECH

Assignee(s): KOREA ADVANCED INSTITUTE OF SCIENCE AND

TECHNOLOGY ; KOREA ADVANCED INST OF SCIENCE

AND TECHNOLOGY

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9) Family number: 59084355 (US2015115226A) © PatBase

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Title: OPTOELECTRONIC COMPONENT, A METHOD FOR

MANUFACTURING AN OPTOELECTRONIC COMPONENT, AND A METHOD FOR PROCESSING A CARRIER

Abstract: Source: US2015115226A According to various embodiments, an optoelectronic component may be provided, the optoelectronic component including: an

electrode structure disposed at least one of over and in a carrier; and a grating structure disposed over the

electrode structure, the grating structure including at least a first region and a second region, wherein the first region of the grating structure includes amorphous silicon; and wherein the second region of the grating structure includes a material having a refractive index different from the refractive index of the amorphous ...

Assignee(s):(std): INFINEON TECHNOLOGIES DRESDEN GMBH

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10) Family number: 59084104 (US2015114783A) © PatBase

Title: FREEWHEEL AND FREEWHEEL ARRANGEMENT

Abstract:

Source: US2015114783A The disclosure relates to a freewheel (4) having a first running ring (28), a second running ring (30), a clamping gap (32) formed between the first and second running rings (28, 30), and at least one clamping element (34) in the clamping gap (32), the clamping gap (32) being assigned a side wall (40;

52) on which the at least one clamping element (34) can be or is supported. According to the disclosure, that side (60; 64) of the clamping element (34) which faces toward the side wall (40; 52) and/or that side (68; 72) of the side wall (40; 52) which faces toward the ...

Assignee(s):(std): BORGWARNER INC

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11) Family number: 55555239 (WO15055037A1) © PatBase

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Title: OLED BACKBOARD AND MANUFACTURING METHOD THEREFOR

Abstract: Source: WO15055037A1 An OLED backboard and a manufacturing method therefor are provided. The manufacturing method for the OLED backboard comprises: forming a pattern comprising TFTs on a substrate; forming a passivation layer (3) on the substrate with the pattern comprising the TFTs; forming a color film (4) on the substrate comprising the passivation layer (3); forming a resin layer (8) on the substrate comprising the color film (4); heavily doping the resin layer (8) in a first area (9) in each sub-pixel on the substrate comprising the resin layer (8) to endow electrical conductivity ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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12) Family number: 55560041 (WO15055029A1) © PatBase

Title: OLED DISPLAY SCREEN AND MANUFACTURING METHOD, DISPLAY DEVICE, AND FILLING METHOD OF FILLING ADHESIVE

Abstract: Source: WO15055029A1 An OLED display screen and manufacturing method, display device, and filling method of a filling adhesive, the OLED display screen comprising: a first substrate (11) and a second substrate (12) oppositely disposed; a first dam encapsulant (13) connected between the first substrate (11) and the second substrate (12), the first dam encapsulant (13) being provided with at least one opening (14); a second dam encapsulant (15) connected between the first substrate (11) and the second substrate (12) and located outside the first dam encapsulant (13), the second dam ...

Assignee(s):(std):

BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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13) Family number: 59000520 (US2015104353A) © PatBase

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Title: DIRECTED SURFACE FUNCTIONALIZATION ON

SELECTED SURFACE AREAS OF TOPOGRAPHICAL FEATURES WITH NANOMETER RESOLUTION

Abstract: Source: US2015104353A A method for making a single molecule receptor in a nanopore structure includes depositing a material by a physical vapor deposition

(PVD) technique onto a selected interior surface of a nanochannel and functionalizing a surface of the

material with a chemical compound having at least two functional groups. The material forms a patch having a diameter of about 3 to about 10,000 nanometers (nm). Also disclosed are embodiments of a nanopore structure including a single molecule receptor.

Assignee(s):(std): IBM ; INTENAT BUSINESS MACHINES CORP

Assignee(s):

INT BUSINESS MACHINES CORP ; INTENATIONAL

BUSINESS MACHINES CORP

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14) Family number: 58818706 (KR101506678B) © PatBase

Title: IGZO THIN FILM FOR ORGANIC SOLAR CELL AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR101506678B The invention IGZO thin film organic solar cell, and relates to a method of manufacturing the same, indium (In), gallium (Ga), zinc (Zn) and oxygen (O) is a rare earth element in the base composition including the addition of IGZO The organic solar cell IGZO IGZO solution prepared by mixing a rare earth element in the host material of the thin film and the IGZO thin film, and the IGZO solution was coated on a glass substrate, and then drying the coated glass substrate, the UV curing (ultraviolet curing) or the organic thin film solar cell production method is ...

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15) Family number: 58402764 (KR101458565B) © PatBase

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Title: ORGANIC SOLAR CELL AND THE MANUFACTURING METHOD THEREOF

Abstract: Source: KR101458565B The present invention relates to an organic solar cell comprising: a substrate; a cathode stacked on the substrate; an electron transport layer stacked on the cathode; a photoactive layer stacked on the electron transport layer; a hole transport layer stacked on the photoactive layer; and an anode stacked on the hole transport layer. In particular, the present invention provides an organic solar cell having a self-assembled monolayer formed between the electron transport layer and the photoactive layer, and including amino acid. According to the present invention, ...

Assignee(s):(std): DAEGU GYEONGBUK INST SCIENCE

Assignee(s): DAEGU GYEONGBUK INSTITUTE OF SCIENCE AND TECHNOLOGY ; DAEGU GYEONGBUK INST OF SCIENCE AND TECHNOLOGY

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16) Family number: 59008629 (KR20150042051A) © PatBase

Title: DEPOSITON APPRATUS AND IN LINE DEPOSITION SYSTEM COPRISING THE SAME

Abstract: Source: KR20150042051A Linear bar module The present invention relates to a deposition apparatus including an evaporation source and a linear end, a nozzle to deposit the deposition material in the glass are arranged to be spaced apart from the top; Is

connected to a linear bar module to supply a deposition material, linear bar module source supply module with an internal height of the crucible is controlled to maintain a constant level of the deposited material on; And by including the auto-level module that controls the height of the inner crucible is kept constant so that

the level of ...

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17) Family number: 59008639 (KR20150042053A) © PatBase

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Title: LINEAR DEPOSITION UNIT AND DEPOSITION

APPARUTUS COPRISING THE SAME

Abstract: Source: KR20150042053A The present invention relates to a linear deposition apparatus including the deposition unit and the linear end, the deposition apparatus according to an embodiment of the

invention, the nozzles are disposed on the top are mutually spaced, so as to deposit the evaporation

material to the glass moves relative to the glass enables linear bar module is placed; And the deposition material passes through but to supply an evaporation material to the nozzle, by including a linear bar modules of the linear opening is the source supply module is provided that is disposed along ...

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18) Family number: 58445190 (US2015090336A) © PatBase

Title: ORGANIC-INORGANIC HYBRID LIGHT EMITTING DEVICE, METHOD FOR MANUFACTURING THE SAME, AND ORGANIC-INORGANIC HYBRID SOLAR CELL

Abstract: Source: US2015090336A The present invention provides an organic-inorganic composite light-emitting

device including a luminescent layer emitting high-brightness light using low voltage, wherein the

luminescent layer has a sandwich structure in which organic luminescent layers are formed on both sides of an inorganic thin film layer. The organic-inorganic composite light-emitting device configured as above is advantageous in that an inorganic thin film layer is inserted and formed between organic luminescent layers, and thus the injection of electrons that occurs when low voltage is applied ...

Assignee(s):(std): UNIV SEOUL IND COOP FOUND

Assignee(s): OF SEOUL IND COOPERATION FOUNDATION UNIV

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19) Family number: 58962862 (KR20150037112A) © PatBase

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Title: SLOT DIE AND METHOD FOR MANUFACTURING ORGANIC SOLAR CELL BY USING THE SLOT DIE

Abstract: Source: KR20150037112A The present invention relates to a method of manufacturing an organic solar cell using a slot die and it.Slot die according to the invention, located in the upper substrate is continuously supplied, the front block portion is formed a first chamber capable of receiving a first material that may be applied to the substrate; Block is connected with the front part, the rear block portion is formed the second chamber capable of receiving a second material that can be applied to the substrate; The front block is connected to the unit, the first chamber is in ...

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20) Family number: 58764483 (US2015083969A) © PatBase

Title: NANOCRYSTAL PARTICLES AND PROCESSES FOR SYNTHESIZING THE SAME

Abstract: Source: US2015083969A A nanocrystal particle including at least one semiconductor material and at least one halogen element, the nanocrystal particle including: a core comprising a first semiconductor nanocrystal; and a shell surrounding the core and

comprising a crystalline or amorphous material, wherein the halogen element is present as being doped therein or as a metal halide

Assignee(s):(std): SAMSUNG ELECTRONICS CO LTD

Assignee(s): SAMSUNG ELECTRONICS CO

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21) Family number: 58764676 (US2015084011A) © PatBase

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Title: ORGANIC MATTER VAPOR DEPOSITION DEVICE AND

ORGANIC LIGHT EMITTING DISPLAY MANUFACTURED THEREBY

Abstract: Source: US2015084011A An organic material deposition device configured to sense a deposition amount of an organic material deposited in a vacuum chamber by detecting a back propagation characteristic variation of a passive radio frequency identification (RFID) sensor. The organic material deposition device includes: a chamber configured to perform an organic material deposition process therein; a deposition source mounted in the chamber to vaporize an organic material; a deposition mask mounted to face the deposition source and configured to bond a substrate at an opposite side to the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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22) Family number: 58762835 (US2015083184A) © PatBase

Title: HIGH CRYSTALLINE POLYTHIOPHENE NANOWIRE FOR ORGANIC SOLAR PANELS AND METHOD OF PREPARATION THEREOF

Abstract: Source: US2015083184A The present invention relates to a method of preparing high crystalline polythiophene nanowire used for organic solar panels, including the following steps: A. a 0.001-40 wt percent polythiophene solution is prepared; B. a 0.01-10 wt percent carbon nanomaterial suspension is prepared and a 0.001-5 wt percent dispersant is added to the suspension to generate a carbon nanomaterial dispersion; C. The foregoing carbon nanomaterial dispersion is added to the polythiophene solution and the resulting mixture is let stand under atmospheric pressure at -10˜45 degrees ...

Assignee(s):(std):

UNIV KUN SHAN

Assignee(s): KUN SHAN UNIV

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23) Family number: 58803636 (WO15042609A1) © PatBase

Title:

MULTIPLE DONOR/ACCEPTOR BULK HETEROJUNCTION SOLAR CELLS

Abstract: Source: WO15042609A1 An organic photovoltaic device includes a first electrode, a second electrode proximate the first electrode with a space reserved therebetween, and a bulk heterojunction active layer arranged between and in electrical connection with the first and second electrodes. The bulk heterojunction active layer comprises a blend of at least one of a plurality of organic electron donor materials and a plurality of electron acceptor materials. The plurality of organic electron donor materials have different photon absorption characteristics so as to provide an enhanced photon ...

Assignee(s):(std): UNIV CALIFORNIA

Assignee(s): THE UNIV OF CALIFORNIA

24) Family number: 58735430 (WO15037200A1) © PatBase

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Title: METHOD FOR MANUFACTURING PHOTOELECTRIC

CONVERSION ELEMENT, AND PHOTOELECTRIC CONVERSION ELEMENT

Abstract: Source: WO15037200A1 A method for manufacturing a photoelectric conversion element according to one embodiment of the present invention comprises: a step

wherein a photoelectric conversion layer is formed by laminating and drying a composition on either an

electron extraction electrode or a hole extraction electrode, said composition containing a p-type organic semiconductor that is represented by general formula (AA) (wherein each of R1 and R2 represents a linear alkyl group or an alkyl group having a branched chain) and has a thiazolothiazole-naphthobisthiadiazole skeleton, an n-type ...

Assignee(s):(std): JX NIPPON OIL AND ENERGY CORP ; RIKAGAKU KENKYUSHO ; RIKEN

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25) Family number: 58741158 (KR20150030970A) © PatBase

Title: EVAPORATION UNIT AND APPARATUS FOR DEPOSITION INCLUDING THE SAME

Abstract: Source: KR20150030970A Nozzle for to deposit the heated evaporation material; Having a total storage in a circumferential direction about the axis of rotation, and the rotating shaft is rotated around the sikimyeo communication with the nozzle portion at least a

portion of the housing, which evaporation materials are stored in an internal time; And evaporation unit including a driving section for providing a driving force for rotating the rotating can continuously supply the evaporation material while maintaining the vacuum atmosphere in the vacuum chamber.

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26) Family number: 58691786 (WO15036287A2) © PatBase

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Title: METHOD FOR PRODUCING A COMPONENT

VERFAHREN ZUM HERSTELLEN EINES BAUELEMENTES

Abstract: Source: WO15036287A2 The invention relates to a method for producing a component in various exemplary embodiments; said method comprising the following steps: A first mask structure (308) is

arranged (202) on or over a substrate (302); a second mask structure (312) is arranged (204) on or over the

first mask structure (308), said first mask structure (308) having a first structuring area (310) prior to the second mask structure (312) being applied to the first mask structure (308). Said first structuring area (310) comprises an opening and/or an area which provided to form an opening; and a ...

Assignee(s):(std): OSRAM OLED GMBH

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27) Family number: 58733551 (TW201509779A) © PatBase

Title: DEPOSITION SOURCE TRANSPORTING APPARATUS

Abstract:

Source: CN104451585A Deposition source delivery apparatus according to an aspect of the present invention comprises: a guide rail extending in one direction is formed, and a first suspension member having a magnetic force is formed; the supporting member, is arranged on the guide rail, and having the

said first suspension member opposite to a second suspension member; and a deposition source frame, mounted on said support member.

Assignee(s): SAMSUNG DISPLAY CO LTD

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28) Family number: 58688708 (US2015069338A) © PatBase

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Title: DISPLAY PANEL AND METHOD OF MANUFACTURING

THE SAME

Abstract: Source: US2015069338A A display panel includes a base substrate, on which a pixel area and a peripheral area are defined, a semiconductor pattern disposed on the base substrate, a display element disposed in the

pixel area of the base substrate and a first thin film transistor configured to control the display element,

where the first thin film transistor includes an input electrode a first portion of the semiconductor pattern and an output electrode disposed on a second portion of the semiconductor pattern, a third portion of the semiconductor pattern between the first portion and the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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29) Family number: 58737578 (KR20150030101A) © PatBase

Title: ORGANIC THIN FILM SOLAR CELL AND METHOD FOR PREPARING THE SAME

Abstract: Source: KR20150030101A The present invention is a substrate; A first electrode layer; Blocking layer; TiO 2 Nano-layers; The photoactive layer; Hole trapping layer; and the second electrode layer are sequentially stacked, the TiO 2 nano-layer alignment angle is 60

degrees or more nanorods (nano-rod), the nano-layer (nano-layer), or nano-month (nano -wall) relates to an organic thin film solar cell comprising the organic thin film solar cell including the exciton is because TiO 2 nano-layer having a distance interval within an effective range, which may be diffusion of excitons can be ...

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30) Family number: 58691762 (DE102013109898A1) © PatBase

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Title: ORGANISCHES LICHTEMITTIERENDES BAUELEMENT,

VERFAHREN ZUM HERSTELLEN EINES ORGANISCHEN LICHTEMITTIERENDEN BAUELEMENTS UND BELEUCHTUNGSEINRICHTUNG FUER EIN KRAFTFAHRZEUG ORGANIC light emitting device, METHOD FOR PRODUCING AN ORGANIC LIGHT EMITTING COMPONENT AND LIGHTING DEVICE FOR A MOTOR VEHICLE (Machine translation)

Abstract: Source: DE102013109898A1 In verschiedenen Ausfuehrungsbeispielen wird ein organisches lichtemittierendes Bauelement (10) bereitgestellt. Das organische lichtemittierende Bauelement (10) hat einen Traeger (12), eine erste Elektrode (20) ueber dem Traeger (12), eine organische funktionelle Schichtenstruktur (22) zum Erzeugen von Licht ueber der ersten Elektrode (20) und eine zweite Elektrode (23) ueber der organischen funktionellen

Schichtenstruktur (22). Mindestens eine der beiden

Elektroden (20, 23) weist Konvertermaterial (52) zum Konvertieren des Lichts in Konversionslicht und ...

Assignee(s):(std): OSRAM OLED GMBH

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31) Family number: 58697173 (KR20150028657A) © PatBase

Title: INVERTED ORGANIC PHOTOVOLTAICS AND METHOD FOR THE SAME

Abstract: Source: KR20150028657A According to The present invention, without requiring a separate metal, such as the conventional Fe-Ni alloy substrate even, mass production is possible inverted structure relates to an organic solar cell.

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32) Family number: 58740648 (KR20150030285A) © PatBase

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Title: ORGANIC SOLAR PHOTOVOLTAICS AND METHOD FOR THE SAME

Abstract: Source: KR20150030285A One aspect of the present invention, the substrate is a normal structure which performs the role of the negative electrode and the substrate at the same time the organic solar cell, and relates to a method of manufacturing the same. ...

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33) Family number: 58740650 (KR20150030286A) © PatBase

Title: MATHOD FOR MANUFACTURING OF INVERTED ORGANIC SOLAR CELLS AND INVERTED ORGANIC SOLAR CELLS USING THEREOF

Abstract: Source: KR20150030286A The present invention relates to the inverse structure of organic solar cells, to a method for producing an organic solar cell, and this change implemented to reverse the polarity of the electrode structure. ...

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34) Family number: 58740652 (KR20150030287A) © PatBase

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Title: MATHOD FOR MANUFACTURING OF INVERTED ORGANIC SOLAR CELLS AND INVERTED ORGANIC SOLAR CELLS USING THEREOF

Abstract: Source: KR20150030287A The present invention relates to the inverse structure of organic solar cells, to a method for producing an organic solar cell, and this change implemented to reverse the polarity of the electrode structure. ...

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35) Family number: 58694873 (WO15034136A1) © PatBase

Title: ORGANIC THIN-FILM SOLAR CELL AND METHOD FOR MANUFACTURING SAME

Abstract: Source: WO15034136A1 The present invention relates to an organic thin-film solar cell in which a substrate, a first electrode layer, a ZnO nanorod layer, a photoactive layer, a hole trapping layer, and a second electrode are stacked in sequence. The ZnO nanorod

layer comprises a plurality of ZnO nanorods, and the contact angle that the ZnO nanorods have with respect to the surface of the first electrode layer is at least 70 degrees. Due to comprising the ZnO nanorod layer having an interval within a length range where exciton can be diffused, the organic thin-film solar cell can

effectively ...

Assignee(s):(std): CHEIL IND INC ; UNIV SEOUL NAT R AND DB FOUND

Assignee(s):

SEOUL NATIONAL UNIV R AND DB FOUNDATION

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36) Family number: 58628807 (US2015059646A) © PatBase

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Title: VAPOR-DEPOSITION DEVICE FOR COATING TWO-

DIMENSIONAL SUBSTRATES

Abstract: Source: US2015059646A A vapor-deposition device for coating two-dimensional substrates with an organic material. The substrates can be positioned within a vacuum chamber above a process chamber or can be

moved past the latter by a transport device. A vaporizer for an organic coating material is arranged

within the process chamber and opposite the substrates. The process chamber is delimited laterally by shields which, opposite the substrates, extend as far as a feed device for the coating material. The vaporizer includes the feed device for the coating material and radiant heaters underneath ...

Assignee(s):(std): FHR ANLAGENBAU GMBH

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37) Family number: 58631486 (US2015064931A) © PatBase

Title: FILM FORMATION METHOD AND FILM FORMATION APPARATUS

Abstract: Source: US2015064931A Disclosed is a film formation method, including vaporizing a plurality of raw material monomers in respective corresponding vaporizers, supplying the plurality of raw material monomers into a film formation apparatus, causing vapor deposition

polymerization of the plurality of raw material monomers in the film formation apparatus to form an organic film on a substrate, and removing an impurity contained in at least one raw material monomer among the plurality of raw material monomers before the vapor deposition polymerization.

Assignee(s):(std): AIR LIQUIDE ; TOKYO ELECTRON LTD

Assignee(s): L AIR LIQUIDE SOC ANONYME POUR L ETUDE ET L EXPLOITATION DES PROCEDES GEORGES CLAUDE

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38) Family number: 58629374 (US2015060809A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DISPLAY DEVICE

AND METHOD OF FABRICATING THE SAME

Abstract: Source: US2015060809A An OLED display device includes a substrate, a driving thin film transistor (TFT) formed on the substrate, a passivation layer formed over the substrate and covering the driving TFT, an OLED display formed on the passivation layer, the OLED including a first electrode, an organic emitting layer and a second electrode, a base line formed on the passivation layer, a support pattern formed on the central portion of the base line, a first bank layer covering a boundary portion of each of the first electrode and the base line so as to expose a central portion of each of ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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39) Family number: 58594513 (TW201508081A) © PatBase

Title: DEPOSITION SOURCE

Abstract:

Source: TW201508081A The present invention discloses a deposition source. According to an embodiment of the present invention, the deposition source embodiment comprises: forming the body member to which an organic substance is discharged from the upper side; comprises a first coil portion

formed on a lower portion of an upper portion of the body member and formed in the body member and the ratio of the said first coil portion relative release more heat a heating unit of the second coil portion. According to this structure, since the upper side than the lower side of the body member to ...

Assignee(s): SAMSUNG DISPLAY CO LTD

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40) Family number: 58672078 (JP2015065416A) © PatBase

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Abstract: Source: JP2015065416A The present invention without the film quality varies by heat or chemical treatment or the like in forming the electrodes, etc., to provide a gate insulating film which can maintain a high flatness at the time of forming the organic semiconductor layer. Further, by using such a gate insulating film, carrier mobility is large, and to provide stable transistor expressible organic thin film transistor characteristics, and a manufacturing method thereof. (A) a bisphenol type epoxy compound and an ethylenically unsaturated bond group compound content is reacted with the ...

Assignee(s):

NSSC CHEMICAL CO LTD ; YAMAGATA UNIV NATIONAL UNIV CORP

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41) Family number: 58631247 (US2015064365A) © PatBase

Title: METHODS OF FORMING FILMS

Abstract:

Source: US2015064365A A method of forming a layer, the method including providing a feedstock, the feedstock including a first component and a second component; ionizing at least part of the feedstock thereby forming a plasma, wherein the plasma includes constituents selected from: the first component,

derivatives of the first component, ions of the first component, ions of derivatives of the first component, the second component, derivatives of the second component, ions of the second component, ions of derivatives of the second component, or combinations thereof, and wherein the individual ...

Assignee(s):(std): SEAGATE TECHNOLOGY LLC

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42) Family number: 58641761 (WO15028407A1) © PatBase

Title:

METHOD FOR LITHOGRAPHIC PATTERNING OF ORGANIC LAYERS

Abstract: Source: WO15028407A1 A method is provided for photolithographic patterning of an organic layer (11), comprising: providing a shielding layer (12) on the

organic layer; providing a photoresist layer (13) on the shielding layer; illuminating the photoresist layer through a shadow mask (14); developing the photoresist layer, thereby forming a patterned photoresist layer; performing a first dry etching step using the patterned photoresist layer as a mask, thereby removing at least an upper portion of the photoresist layer and completely removing the shielding layer at locations not covered by ...

Assignee(s):(std):

FUJIFILM CORP ; IMEC

43) Family number: 58629355 (US2015060775A) © PatBase

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Title: ORGANIC PHOTO DIODE WITH DUAL ELECTRON BLOCKING LAYERS

Abstract: Source: US2015060775A Embodiments of forming an image sensor with an organic photodiode are provided. The organic photodiode uses dual electron-blocking layers formed next to the anode of the organic photodiode to reduce dark current. By using dual electron-blocking layers, the values of highest occupied

molecular orbital (HOMO) for the neighboring anode

layer and the organic electron-blocking layer are matched by one of the dual electron-blocking layers to form a photodiode with good performance. The values of the lowest occupied molecular orbital (LOMOs) of the dual electron-blocking ...

Assignee(s):(std):

TAIWAN SEMICONDUCTOR MFG

Assignee(s): TAIWAN SEMICONDUCTOR MFG CO LTD

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44) Family number: 58579561 (WO15025058A1) © PatBase

Title: PHOTOVOLTAIC ELEMENTS HAVING LONG-TERM STABILITY THAT CAN BE PRECIPITATED OUT OF SOLUTIONS, AND IN-SITU METHOD FOR PRODUCING SAID ELEMENTS LANGZEITSTABILE, AUS LOESUNGEN ABSCHEIDBARE PHOTOVOLTAISCHE ELEMENTE UND IN-SITU-VERFAHREN ZU DEREN HERSTELLUNG

Abstract:

Source: WO15025058A1 The invention relates to a photovoltaic element containing a front electrode and a further electrode, each containing a glass substrate and an electrically conductive electrode layer, which is arranged on the glass substrate, at least two porous carrier layers, which are arranged between the two

electrodes, the two electrodes being connected to the adjacent porous carrier layers without a spacing, a plurality of solder glass webs, which are arranged between the two electrodes to fix the at least two

porous carrier layers, and at least one photovoltaically active ...

Assignee(s):(std): FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E V

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER

ANGEWANDTEN FORSCHUNG EV

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45) Family number: 58589810 (US2015056370A) © PatBase

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Title: THIN FILM DEPOSITION APPARATUS AND THIN FILM

DEPOSITION METHOD USING THE SAME

Abstract: Source: US2015056370A A thin film deposition apparatus includes a mask in contact with a first surface of a substrate, a magnet plate above a second surface of the substrate and configured to pull the

mask toward the first surface of the substrate, the second surface being an opposite surface to the first

surface, and an insulating member between the magnet plate and the second surface of the substrate.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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46) Family number: 58591628 (KR20150021345A) © PatBase

Title: DEPOSITION APPARATUS

Abstract:

Source: KR20150021345A According to an aspect of the present invention there is provided a deposition space therein, and a vacuum chamber in which a through hole formed on the bottom surface; And the crucible is connected to the deposition space through the through hole in the bottom of the vacuum chamber;

Comprising a heater tube shape to cover the outer peripheral surface of the crucible to heat the crucible and the heater portion of the tube-shaped, the mounting direction with the side end of the crucible, or can be segmented in the longitudinal direction so that a separation is provided ...

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47) Family number: 58580943 (WO15024120A1) © PatBase

Title:

CARBENE FUNCTIONALIZED COMPOSITE MATERIALS

Abstract: Source: WO15024120A1 The present application provides stable, carbene-functionalized composite materials, and methods and uses thereof. These carbene-functionalized composite materials comprise a material having a metal surface, and a carbene monolayer that is uniform, contaminant-free (metal oxide, etc), and more stable than thiol-functionalized monolayers. Uses of such carbene-functionalized composite materials include semi-conducting materials, microelectronic devices, drug delivery or sensing applications.

Assignee(s):(std): UNIV KINGSTON

Assignee(s): QUEEN S UNIV AT KINGSTON

48) Family number: 58505799 (US2015048320A) © PatBase

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Title: THIN-FILM TRANSISTOR ARRAY SUBSTRATE, DISPLAY

DEVICE INCLUDING THE SAME, AND METHOD OF MANUFACTURING THE THIN-FILM TRANSISTOR ARRAY SUBSTRATE

Abstract: Source: US2015048320A A method of manufacturing a thin film transistor (TFT) array substrate is disclosed. In

one aspect, the method includes forming an active layer on a substrate, forming a first insulating layer on

the substrate to cover the active layer, and forming a first gate electrode on the first insulating layer in an area corresponding to the active layer, doping the active layer with ion impurities, forming a second insulating layer on the first insulating layer to cover the first gate electrode, performing an annealing process on the active layer, forming a lower electrode of a ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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49) Family number: 58463785 (WO15018899A1) © PatBase

Title: FORMATION OF SURFACE MODIFIED METAL COLLOIDS

Abstract:

Source: WO15018899A1 The present patent application is related to formation of functional surface modified metal colloids suitable as master batch for direct use in lacquers, paints, coatings and inks. For this the metal colloids are surface modified with organosilsesquioxanes comprising at least one

functional group.

Assignee(s):(std): LEIBNIZ INST F NEUE MATERIALIEN GEMEINNUETZIGE GMBH

Assignee(s):

LEIBNIZ INST FUR NEUE MATERIALIEN GEMEINNUTZIGE GMBH

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50) Family number: 58463788 (WO15020572A1) © PatBase

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Title: CONJUGATED POLYMERS

Abstract: Source: WO15020572A1 The present invention relates to polymers comprising a conjugated backbone with repeating units represented by formula (I) wherein A represents a planar aromatic unit and X in each case independent from each other represents a divalent acetylene fragment or a thiophene unit and the use of theses polymers in photovoltaic devices. ...

Assignee(s):(std):

INST OF PROBLEMS OF CHEMICAL PHYSICS RAS ;

LANXESS DEUTSCHLAND GMBH

Assignee(s): OF PROBLEMS OF CHEMICAL PHYSICS RAS INST

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51) Family number: 58500532 (KR20150016825A) © PatBase

Title: ORGANIC SOLAR CELLS USING CHEMICALLY MODIFIED SILICON NANOPARTICLES AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR101501266B The organic solar cell comprising the chemically-modified silicon nanoparticles, and provides a method of manufacturing the same. Organic solar cells are i) a substrate, ii) a first electrode layer that is formed on the substrate, iii) a hole-receiving layer that is formed on the first electrode layer, iv) an organic light-absorbing layer that is formed on the hole-receiving layer, and v) located on the organic light-absorbing layer which includes a second electrode layer. Organic light-absorbing layer comprises a silicone-modified nanoparticles. ...

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52) Family number: 58448319 (US2015038666A) © PatBase

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Title: PHOTOELECTRIC CONVERSION MATERIAL, METHOD FOR PRODUCING THE SAME, AND ORGANIC PHOTOVOLTAIC CELL CONTAINING THE SAME

Abstract: Source: US2015038666A A bulk heterojunction-type organic photovoltaic cell, i.e., BHJ solar cell, has a photoelectric conversion layer containing a mixture of a donor domain and an acceptor domain. The donor domain contains a polymer as a donor (photoelectric conversion material), and the polymer is obtained by reaction of a polyphenylene having a structural unit selected from moieties represented by the following general formulae (1) to (3). For example, the acceptor domain contains phenyl-C61-butyric acid methyl ester (PCBM) as an acceptor. R1 to R8 in the general formulae (1) to (3) ...

Assignee(s):(std): HONDA MOTOR CO LTD

Assignee(s): HONDA MOTOR CO

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53) Family number: 58446655 (US2015034613A) © PatBase

Title: SYSTEM FOR PERFORMING LASER FILAMENTATION WITHIN TRANSPARENT MATERIALS

Abstract: Source: US2015034613A Systems and methods are described for forming continuous laser filaments in transparent materials. A burst of ultrafast laser pulses is focused such that a beam waist is formed external to the material being processed without forming an

external plasma channel, while a sufficient energy density is formed within an extended region within the material to support the formation of a continuous filament, without causing optical breakdown within the material. Filaments formed according to this method may exhibit lengths exceeding up to 10 mm. In some

embodiments, an aberrated ...

Assignee(s):(std): ROFIN SINAR TECHNOLOGIES INC

Assignee(s):

NA JUNG UN ; HOSSEINI S ABBAS ; KINESTRAL TECHNOLOGIES INC ; ALBELO GILBERT

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54) Family number: 55172500 (US2015037746A) © PatBase

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Title: HEAT CONDUCTION DEVICE INCLUDED CRUCIBLE

Abstract: Source: US2015037746A The present invention provides a heat conduction device included crucible, which includes: a crucible body and a heat conduction device arranged in the crucible body. The heat conduction device has a tree-like configuration, which

includes a heat-dissipative trunk and multiple levels of heat dissipative branches mounted to the heat-

dissipative trunk. Each level of the heat dissipative branches includes a plurality of branch units and the branch units are arranged to project out from an outer surface of the heat-dissipative trunk. The heat conduction device included ...

Assignee(s):(std): SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO LTD ; SHENZHEN HUAXING OPTOELECT TEC

Assignee(s):

SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO

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55) Family number: 58452114 (WO15015120A2) © PatBase

Title: METHOD FOR EXFOLIATING CARBONACEOUS MATERIALS CONTAINING GRAPHITE, ASSISTED BY A DIELS-ALDER REACTION

Abstract: Source: WO15015120A2 The present invention relates to a method for exfoliating graphite in carbonaceous materials facilitated by a Diels-Alder reaction, and the applications of same, in particular for producing

electronic or microelectronic components such as transparent conductive electrodes. The method of the invention is characterised in that it comprises a Diels-Alder reaction between a material containing graphite and an anthrone compound represented by the following formula (I), in which X, R1, R2, R3 and R4 are

as defined in the description, in an organic solvent, in the presence of a ...

Assignee(s):(std): CENTRE NAT RECH SCIENT ; DE BORDEAUX UNIV ;

INST POLYTECHNIQUE BORDEAUX ; UNIV BORDEAUX

1

Assignee(s): BORDEAUX 1 UNIV ; POLYTECHNIQUE DE BORDEAUX INST ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS

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56) Family number: 58446788 (US2015034933A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DISPLAY HAVING

THIN FILM TRANSISTOR SUBSTRATE USING OXIDE SEMICONDUCTOR AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2015034933A Provided is a thin film transistor having an oxide semiconductor material for

an organic light emitting diode display and a method for manufacturing the same. The organic light emitting

diode display comprises: a gate electrode formed on a substrate; a gate insulating layer formed on the gate electrode; a semiconductor layer formed on the gate insulating layer to overlap with the gate electrode, and including a channel area and source and drain areas which extend from the channel area to both outsides, respectively and are conductorized; an etch stopper formed on the ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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57) Family number: 58395403 (US2015029681A) © PatBase

Title: FLEXIBLE COMPOSITE, PRODUCTION THEREOF AND USE THEREOF

Abstract:

Source: US2015029681A A flexible composite comprising a plastic foil, having an upper and a lower surface, and at least one dielectric barrier layer against gases and liquids which is applied directly to at least one of the surfaces by plasma-enhanced thermal vapor deposition and comprises an inorganic vapor-depositable material, is provided. The flexible composite can be used for constructing flexible circuits or displays and has a high barrier effect with regard to oxygen and/or water vapor.

Assignee(s):(std):

ALBERT PHILIPP ; BORUP BJOERN ; SAXENA ANIL K ; MACK HELMUT ; EVONIK IND AG

58) Family number: 55268802 (WO15010397A1) © PatBase

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Title: ARRAY SUBSTRATE, METHOD FOR MANUFACTURING

SAME, AND DISPLAY DEVICE

Abstract: Source: WO15010397A1 An array substrate comprises a display area and a GOA area. In the GOA area, a gate metal electrode, a gate insulating layer, an active layer, a transition layer, and a source/drain metal electrode

are sequentially formed from bottom to top, and a via running through the transition layer, the active layer

and the gate insulating layer is provided. The source/drain metal electrode is electrically connected to the gate metal electrode through the via. At the edge of the via, an upwardly directed angle is formed at the edges of the transition layer and the active layer. ...

Assignee(s):(std): BEIJING BOE OPTOELECTRONICS ; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO LTD ; BOE TECHNOLOGY GROUP CO LTD

Assignee(s):

BOE TECHNOLOGY GROUP CO ; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO

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59) Family number: 58418598 (KR20150011410A) © PatBase

Title: PREPARATION METHOD OF ULTRA THIN SILVER NANOWIRES AND TRANSPARENT CONDUCTIVE ELECTRODE FILM PRODUCT THEREOF

Abstract: Source: KR20150011410A The present invention is a flexible display (Flexible Display), or relates to a method for producing a transparent conductive electrode film material that is used an organic solar cell or the like, at least the lowest 5ohm the substrate surface of a polymer film having a uniform plane structure / ? from the top of the 150ohm / a highly transparent structure having a highly conductive ultrafine ultrafine diameter of 30nm or less and the method of forming the transparent conductive film electrode of the characteristics of surface resistance of ? relates to a method ...

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60) Family number: 58341135 (WO15007670A1) © PatBase

Title:

METHOD FOR PRODUCING AN EFFICIENT CATALYST FOR GENERATING MULTI-WALLED CARBON NANOTUBES, MULTI-WALLED CARBON NANOTUBES AND CARBON NANOTUBE POWDER VERFAHREN ZUR HERSTELLUNG EINES EFFIZIENTEN KATALYSATORS FUER DIE PRODUKTION MEHRWANDIGER KOHLENSTOFFNANOROEHRCHEN, MEHRWANDIGES KOHLENSTOFFNANOROEHRCHEN UND KOHLENSTOFFNANOROEHRCHENPULVER

Abstract: Source: WO15007670A1 The invention relates to a method for producing a catalyst for the synthesis of multi-walled carbon nanotubes. The invention also relates to a

method for producing multi-walled carbon nanotubes and a carbon nanotube powder with improved properties and comprising said carbon nanotubes. Die Erfindung betrifft ein Verfahren zur Herstellung eines Katalysators fuer die Synthese mehrwandiger Kohlenstoffnanoroehrchen. Weiterhin betrifft die Erfindung ein Verfahren zur Herstellung mehrwandiger Kohlenstoffnanoroehrchen sowie ein diese Kohlenstoffnanoroehrchen aufweisendes ...

Assignee(s):(std): BAYER MATERIALSCIENCE AG

61) Family number: 58340657 (WO15007439A1) © PatBase

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Title: METHOD FOR FORMING A CONDUCTOR PATH

STRUCTURE ON AN ELECTRODE SURFACE OF AN ELECTRONIC COMPONENT VERFAHREN ZUM AUSBILDEN EINER LEITERBAHNSTRUKTUR AUF EINER ELEKTRODENFLAECHE EINES ELEKTRONISCHEN BAUELEMENTES

Abstract: Source: WO15007439A1 The invention relates to a

method for forming a conductor path structure (8) on an electrode surface (4) of an electronic component, said method comprising the following steps: electrically conductive metal particles (1) are introduced into an insulating carrier material (2); a blended mass (3) is produced by blending the carrier material (2) with the metal particles (1); the blended mass (3) is applied to the electrode surface (4); the metal particles (1) are separated from the carrier material (2); the metal particles (1) attach themselves to the electrode surface

(4); ...

Assignee(s):(std): OSRAM OLED GMBH

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62) Family number: 55175057 (WO15006994A1) © PatBase

Title: ORGANIC P-N JOINT-BASED INFRARED DETECTION DEVICE AND MANUFACTURING METHOD THEREFOR, AND INFRARED IMAGE DETECTOR USING SAME

Abstract: Source: WO15006994A1 An organic p-n joint-based infrared detection device and a manufacturing method therefor, and an infrared image detector using same. The organic p-n joint-based infrared detection device

comprises: an active glass substrate (42) and a packaging glass substrate (44) which are oppositely arranged in parallel; a plurality of organic p-n joints (43) which are arranged between the active glass substrate (42) and the packaging glass substrate (44); and packaging materials (48) which are arranged in the

peripheral edge regions of the active glass substrate (42) and the ...

Assignee(s):(std): SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN

CHINA STAR OPTOELECTRONICS TECHNOLOGY CO LTD

; SHENZHEN HUAXING OPTOELECT TEC

Assignee(s): SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO

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63) Family number: 55371551 (WO15007094A1) © PatBase

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Title: MESOSCOPIC SOLAR CELL BASED ON PEROVSKITE

LIGHT ABSORPTION MATERIAL AND PREPARATION METHOD THEREOF

Abstract: Source: WO15007094A1 Disclosed is a mesoscopic solar cell based on a perovskite light absorption material, comprising a substrate, and a hole blocking

layer, a mesoporous nanocrystalline layer, an insulation separation layer, and a mesoporous hole collecting

layer that are sequentially stacked on the substrate. The mesoporous nanocrystalline layer, the insulation separation layer, and the mesoporous hole collecting layer are all filled with perovskite semi-conductor materials. Further disclosed is a preparation method thereof. A mesoscopic solar cell device in the present invention is ...

Assignee(s):(std): HUAZHONG UNIV OF SCIENCE AND TECHNOLOGY ; UNIV HUAZHONG SCIENCE TECH

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64) Family number: 58292580 (WO15004393A1) © PatBase

Title: METHOD FOR PRODUCING AN ACTIVE LAYER CAPABLE OF EMITTING AN ELECTRIC CURRENT UNDER IRRADIATION

Abstract: Source: WO15004393A1 Method for producing an active layer capable of emitting an electric current under irradiation The present invention concerns the field of organic electronics for photovoltaic energy, that is to say the conversion of light energy into electricity. The invention relates in particular to a method for producing an active layer capable of emitting an electric current under light irradiation, said layer combining a ferroelectric polymer material and a semiconductor polymer allowing the transformation of light energy into electricity. ...

Assignee(s):(std): ARKEMA FRANCE ; CENTRE NAT RECH SCIENT ; INST POLYTECHNIQUE BORDEAUX ; UNIV BORDEAUX 1 ; UNIV BORDEAUX

Assignee(s): POLYTECHNIQUE DE BORDEAUX INST ; CENTRE

NATIONAL DE LA RECHERCHE SCIENTIFIQUE ; DE BORDEAUX UNIV ; DE BORDEAUX 1 UNIV

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65) Family number: 58285534 (US2015016070A) © PatBase

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Title: CONDUCTIVE STRUCTURE AND DEVICE WITH THE

CONDUCTIVE STRUCTURE AS ELECTRODE

Abstract: Source: US2015016070A Provided is a conductive structure and a device with the conductive structure as an electrode. The conductive structure includes a reduced metal layer and an overlapping structure

formed by nano metal wires. The overlapping structure has at least one connecting portion, and the reduced

metal layer covers the nano metal wires at the connecting portions.

Assignee(s):(std): IND TECH RES INST

Assignee(s): INDUSTRIAL TECHNOLOGY RESEARCH INST

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66) Family number: 58237874 (WO15000095A1) © PatBase

Title: FLEXIBLE DISPLAY AND METHOD FOR FABRICATING THE SAME

Abstract: Source: WO15000095A1 A flexible display (100, 200, 400, 500) and method for fabricating the same are provided. The flexible display (100, 200, 400, 500) includes: a first flexible substrate (106, 106a, 106b) and an oppositely disposed second flexible substrate

(206, 206a, 206b); a TFT layer (108) and an emitting unit (110), sequentially formed on the first flexible substrate (106, 106a, 106b); a color filter layer (208) and an overcoat (210) formed on the second flexible substrate (206, 206a, 206b); an adhesive layer (240) formed between the first flexible substrate (106, 106a,

106b) and the ...

Assignee(s):(std): IND TECH RES INST

Assignee(s):

INDUSTRIAL TECHNOLOGY RESEARCH INST

67) Family number: 57950479 (KR101469235B) © PatBase

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Title: APPARATUS AND METHOD FOR FABRICATING ORGANIC SOLAR CELL

Abstract: Source: KR101469235B Disclosed are an apparatus for manufacturing an organic solar cell. According to the present invention, an anode electrode forming part, a first buffer layer forming part, an active layer forming part, a second buffer layer forming part, and a cathode electrode forming part are successively arranged by a roll-to-roll method. Each of the anode electrode forming part, the first buffer layer forming part, the active layer forming part, and the second buffer layer forming part includes a gravure coater. The cathode electrode forming part includes a coating bar. ...

Assignee(s):(std): NAT UNIV HANBAT IND

Assignee(s): HANBAT NATIONAL UNIV IND ACADEMIC COOPERATION FOUNDATION ; HANBAT NATIONAL UNIVERSITY INDUSTRY ACADEMIC COOPERATION FOUNDATION

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68) Family number: 58294266 (TW201502299A) © PatBase

Title: DEPOSITION SOURCE

Abstract:

Source: TW201502299A A deposition source is provided. The deposition source according to an exemplary embodiment of the present invention includes a body member formed to upwardly discharge an organic material, and a heating unit formed at the body member and applying heat to the body member.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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69) Family number: 58180169 (US2015004419A) © PatBase

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Title: FLUORINE-CONTAINING SURFACE TREATMENT AGENT

AND AN ARTICLE TREATED WITH THE SAME

Abstract: Source: US2015004419A The invention provides a surface treatment agent wherein a fluorooxyalkylene group-containing polymer or a fluorooxyalkylene group-containing polymer composition comprising the

polymers, which is controlled of a temperature range of vaporization of fluorooxyalkylene group-containing

polymer(s). The fluorooxyalkylene group-containing polymer has a fluorooxyalkylene structure represented by -(OCF2)p(OCF2CF2)q- and hydrolysable groups bond to a silicon atom represented by the formula at least one terminal. The polymer composition shows a decrease of 75 percent or more in ...

Assignee(s):(std): SHINETSU CHEMICAL CO

Assignee(s): SHIN ETSU CHEM CO LTD ; SHIN ETSU CHEMICAL CO ;

SHIN ETSU CHEMICAL CO LTD

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70) Family number: 58180240 (US2015004736A) © PatBase

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Title: METHOD OF MANUFACTURING LIGHT-ABSORBING

LAYER HAVING SEMICONDUCTOR NANOPARTICLES AND METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE HAVING THE SAME LIGHT-ABSORBING LAYER

Abstract: Source: US2015004736A An exemplary method of manufacturing a light-absorbing layer and a method of

manufacturing a semiconductor device including the same light-absorbing layer are provided. The exemplary

method includes: forming a nanoparticles film by applying a semiconductor nanoparticles solution on a substrate; thermally treating the nanoparticles film at least one time to cause adhesion among the nanoparticles; and forming a light-absorbing layer by applying a light-absorbing solution on the nanoparticles film.

Assignee(s):(std):

SNU R AND DB FOUNDATION

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71) Family number: 58240758 (WO15000859A1) © PatBase

Title: OPTOELECTRONIC COMPONENT AND METHOD FOR PRODUCING SAME OPTOELEKTRONISCHES BAUELEMENT UND VERFAHREN ZU DESSEN HERSTELLUNG

Abstract: Source: WO15000859A1 The invention relates to a method for producing an optoelectronic component (10) which is provided in various exemplary

embodiments. In said method, an optoelectronic layer structure having a first adhesive layer (30), which has a first metal material, is formed over a carrier (12). A covering element (36) is provided together with a second adhesive layer (34), which has a second metal material. A first alloy (32) is applied to at least one of

the two adhesive layers (30, 34). The melting point of the first alloy is so low that the first alloy (32) is liquid. The ...

Assignee(s):(std):

OSRAM OLED GMBH

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72) Family number: 58241538 (WO15001984A1) © PatBase

Title:

PHOTOELECTRIC CONVERSION ELEMENT MODULE AND METHOD FOR MANUFACTURING SAME

Abstract: Source: WO15001984A1 [Problem] To provide a photoelectric conversion element module in which sufficient power generation performance can be

obtained, and a method for manufacturing the photoelectric conversion element module. [Solution] A photoelectric conversion element module obtained by electrically connecting two or more photoelectric conversion elements obtained by stacking a substrate, a first electrode, a photoelectric conversion layer containing a semiconductor and a sensitizing dye, a hole transportation layer having an electroconductive polymer, and a second electrode in the ...

Assignee(s):(std):

KONICA MINOLTA INC

73) Family number: 58243151 (KR20150003439A) © PatBase

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Title: ORGANIC ELECTRONIC DEVICE AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20150003439A Disclosed are an organic electronic device and a manufacturing method thereof. The organic electronic device includes an organic polymer photoactive layer which is formed on the bottom structure, a metal oxide layer which is arranged on the photoactive layer, and a charge transport channel which is formed on the photoactive layer by the doping of the metal ions of the metal oxide layer. The charge transport channel is doped by the oxidation and reduction reaction of an organic polymer and the metal oxide. A doping degree is implemented according to doping time, ...

Assignee(s):(std): INST SCIENCE AND TECH KWANGJU ; KWANGJU INST SCI AND TECH

Assignee(s): GWANGJU INST OF SCIENCE AND TECHNOLOGY ; GWANGJU INSTITUTE OF SCIENCE AND TECHNOLOGY

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74) Family number: 58176707 (WO14208985A1) © PatBase

Title: METHOD FOR MANUFACTURING ORGANIC SOLAR CELL AND ORGANIC SOLAR CELL MANUFACTURED USING SAME

Abstract: Source: WO14208985A1 The present invention relates to a method for manufacturing an organic solar cell and an organic solar cell manufactured using the same, the method comprising the steps of: forming a thin film layer while transferring a substrate film in a roll-to-roll scheme; and transferring, to a drying unit, the substrate film on which the thin film layer is formed, and evaporating solvent included in the thin film layer, to dry the thin film layer, wherein the drying unit has an inclined surface disposed slantingly with respect to the substrate film such that the solvent ...

Assignee(s):(std):

KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC

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75) Family number: 58177794 (US2015047085A) © PatBase

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Title: PREPARATION AND COATING OF PILOT EQUIPMENT WITH ORGANIC PHOTOVOLTAIC FILMS TO PRODUCE ELECTRICITY FOR EMERGENCY POWER SUPPLY SYSTEMS FOR PILOTS

Abstract: Source: US2015047085A A method for fabricating organic photovoltaic-based electricity-generating military pilot equipment, including flight suits, helmets, helmet visors, and related equipment is described. In particular, a method for fabricating such equipment utilizing lamination of highly flexible organic photovoltaic films is described. High-throughput and low-cost fabrication options also allow for economical production. ...

Assignee(s):(std): CONKLIN JOHN ANTHONY ; HAMMOND SCOTT RYAN ; NEW ENERGY TECHNOLOGIES INC ; THOMPSON J PATRICK ; THOMPSON PATRICK J

Assignee(s): THOMPSON J ; SOLARWINDOW TECHNOLOGIES INC

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76) Family number: 58180235 (US2015004722A) © PatBase

Title: METHOD FOR FABRICATING LIGHT-EMITTING ELEMENT AND LIGHT-EMITTING ELEMENT

Abstract: Source: US2015004722A A light-emitting element and its fabrication method are provided. The light-emitting element includes an EL layer between a pair of electrode, and the EL layer is formed by evaporation of an organic compound. The evaporation is conducted so

that the partial pressure of a component with a specific molecular weight in a film-formation chamber, which is monitored by a mass spectrometer, does not exceed a specific value during the evaporation. This method allows the formation of a light-emitting element having an improved lifetime.

Assignee(s):(std): SEMICONDUCTOR ENERGY LAB

Assignee(s): SEMICONDUCTOR ENERGY LABORATORY CO ; SEMICONDUCTOR ENERGY LABORATORY CO LTD

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77) Family number: 58189853 (KR20150002055A) © PatBase

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Title: INVERTED ORGANIC SOLAR CELL WITH IGZO AND METHOD FOR FABRICATING THEREOF

Abstract: Source: KR20150002055A The present invention provides an inverted organic solar cell using IGZO and a manufacturing method thereof. The inverted organic solar cell includes a first electrode, an electron extraction layer, a photoactive layer, a hole extraction layer, and a second electrode which are successively stacked on a substrate. The electron extraction layer is ametal oxide thin film (IGZO) which is formed by using oxide zinc precursor solutions doped with In and Ga by a sol-gel method. According to the present invention, manufactured is the inverted organic solar cell with high ...

Assignee(s):(std): SNU R AND DB FOUNDATION

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78) Family number: 58189854 (KR20150001956A) © PatBase

Title: METHOD FOR MANUFACTURING ORGANIC SOLAR CELL AND AN ORGANIC SOLAR CELL MANUFACTURING BY USING THE SAME

Abstract: Source: KR20150001956A The present invention relates to a method for manufacturing an organic solar cell and the organic solar cell manufactured thereby. The method for manufacturing the organic solar cell includes the step of forming a coating layer on one side of a base film while transferring the base film by using a roll whose surface temperature is 40 to 100 degrees centigrade. The method for manufacturing the organic solar cell forms the coating layer with high film quality. Also, according to the method for manufacturing the organic solar cell, the coating layer is formed with a ...

Assignee(s):(std): KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC

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79) Family number: 58189876 (KR20150002071A) © PatBase

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Title: ORGANIC SOLAR CELLS USING EXCITON BLOCKING LAYERS AND METHOD FOR FABRICATING THEREOF

Abstract: Source: KR20150002071A The present invention relates to an organic solar cell to introduce an exciton blocking layer on both a hole extraction layer and an electron extraction layer and, more particularly, to an organic solar cell which is composed of hole and electron exciton blocking layers on two metal layers and a light absorption layer which is formed by a bulk heterojunction. Charges generated by light are smoothly moved by smoothing transporting the charges by simultaneously introducing a hole transport layer and an electron transport layer for an exciton blocking layer with a ...

Assignee(s):(std): SNU R AND DB FOUNDATION

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80) Family number: 58190003 (KR20150002152A) © PatBase

Title: ASSEMBLY FOR DEPOSITING SOURCE AND APPARATUS FOR DEPOSITING HAVING THE SAME

Abstract: Source: KR20150002152A The present invention relates to a deposition source assembly having an improved structure to enable to increase a flow area of organic materials flown between a crucible and a substrate, and a deposition apparatus having the same.

According to the present invention, the deposition source assembly comprises: the crucible to discharge the organic materials deposited downwardly on the substrate on the upper part of the substrate; a heater portion disposed in the crucible to supply heat in order to convert the organic materials contained in the

crucible into gas; and a ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s):

LIGADP CO ; LIGADP CO LTD

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81) Family number: 58190005 (KR20150002153A) © PatBase

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Title: ASSEMBLY FOR DEPOSITING SOURCE AND APPARATUS

FOR DEPOSITING HAVING THE SAME

Abstract: Source: KR20150002153A The present invention relates to a deposition source assembly improving a discharge structure of an organic material converted to gas in a crucible, and a deposition apparatus having the

same. According to the present invention, the deposition source assembly comprises: the crucible to

divide a receiving area of the organic material deposited on a substrate and a discharging area divided from the receiving area discharging the organic material downwardly by receiving the organic material to be converted to a gas in the receiving area; a heater unit disposed in the ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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82) Family number: 58190009 (KR20150002154A) © PatBase

Title: ASSEMBLY FOR DEPOSITING SOURCE AND APPARATUS FOR DEPOSITING HAVING THE SAME

Abstract: Source: KR20150002154A The present invention relates to a deposition source assembly having an improved structure capable of preventing organic materials not converted to gas from being discharged externally of a crucible when converting the organic

materials to the gas by supplying heat to the crucible, and a deposition apparatus having the same. According to the present invention, the deposition source assembly comprises: the crucible disposed to divide a receiving area of the organic materials deposited in the substrate and a discharging area of receiving and

discharging downwardly the ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s):

LIGADP CO ; LIGADP CO LTD

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83) Family number: 58176447 (WO14208713A1) © PatBase

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Title: ORGANIC THIN-FILM SOLAR CELL AND ORGANIC THIN-

FILM SOLAR CELL MANUFACTURING METHOD

Abstract: Source: WO14208713A1 An organic thin-film solar cell comprises a substrate, an anode, an organic thin-film layer including an organic semiconductor layer, and a cathode. In the organic thin-film solar cell, the anode,

the organic thin-film layer including the organic semiconductor layer, and the cathode are sequentially

stacked on the substrate. The organic thin-film solar cell has a fine structure having an uneven shape formed on the interface between the organic thin-film layer and the cathode, said uneven shape having a plurality of recess portions or protrusion portions arranged ...

Assignee(s):(std): OJI HOLDINGS CORP ; RIKAGAKU KENKYUSHO

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84) Family number: 58174889 (WO14206790A1) © PatBase

Title: OPTOELECTRONIC COMPONENT AND METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT OPTOELEKTRONISCHES BAUELEMENT UND VERFAHREN ZUM HERSTELLEN EINES OPTOELEKTRONISCHEN BAUELEMENTS

Abstract: Source: WO14206790A1 The invention concerns an optoelectronic component (100, 200, 300, 400)

comprising: an optically active region (106), which is designed to absorb and/or produce electromagnetic radiation; at least one first contact structure (130), the optically active region (106) being coupled in electrically conductive manner to the first contact structure (130); and an encapsulating structure (124)

having a second contact structure (128), the encapsulating structure (124) being formed on or over the optically active region (106) and the first contact structure (130); and an ...

Assignee(s):(std):

OSRAM OLED GMBH

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85) Family number: 58174819 (WO14206775A1) © PatBase

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Title: METHOD FOR PROCESSING AN ELECTRONIC

COMPONENT AND ELECTRONIC COMPONENT ARRANGEMENT VERFAHREN ZUM BEARBEITEN EINES ELEKTRONISCHEN BAUELEMENTS UND ELEKTRONISCHE BAUELEMENTEANORDNUNG

Abstract:

Source: WO14206775A1 A method (200) for processing an electronic component (130) is disclosed in various

embodiments. Said method comprises the following steps: applying (204) a flat structure (128) that is provided with predetermined separation points (304) onto the electronic component (130); and removing (208) a part (306, 404) of the flat structure (128) applied to the component, the step of removing (208) including separating the flat structure (128) in the predetermined separation points (304). In verschiedenen Ausfuehrungsbeispielen wird ein Verfahren (200) zum Bearbeiten eines ...

Assignee(s):(std): OSRAM OLED GMBH

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86) Family number: 58129024 (DE102013010838A1) © PatBase

Title: STROMERZEUGENDES LUFTSCHIFFAUSSENMANTELMATERIAL STROMER CONVINCING AIRSHIP OUTER COVER MATERIAL (Machine translation)

Abstract: Source: DE102013010838A1 Spritzverfahren fuer die Herstellung von Flex-Kunststoff-Planen, dadurch gekennzeichnet, dass Spritzduesen-Anordnungen vorgesehen sind fuer das Ausspritzen von Partikelmaterial, wobei vorgesehen ist, dass das ausgespritzte Partikelmaterial Kunststoffplanen formt, wobei jede entstehende Kunststoffganzplane aus mehreren Spritzduesen beaufschlagt wird, wobei erste Spritzduesenanordnungen vorgesehen sind fuer das Ausspritzen von Materialpartikeln mit p-dotiertem Grundmaterial und zweite Spritzduesenanordnungen fuer das Ausspritzen von Materialpartikeln mit n-dotiertem ...

Assignee(s):(std):

MOERICKE DANGER

Assignee(s): MOERICKE

87) Family number: 58065334 (US2014367664A) © PatBase

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Title: DISPLAY DEVICE AND METHOD FOR MANUFACTURING

DISPLAY DEVICE

Abstract: Source: US2014367664A Provided is a display device, including: a substrate; signal lines including a gate line, a data line, and a driving voltage line that collectively define an outer boundary of a pixel area; a transistor

connected to the signal line; a first electrode extending across the pixel area and formed on the signal line and

the transistor, and connected to the transistor, the first electrode having a first portion overlying only the signal line and the transistor, and a second portion comprising all of the first electrode not included in the first portion; a pixel defining layer ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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88) Family number: 58066565 (US2014370633A) © PatBase

Title: ORGANIC LAYER DEPOSITION APPARATUS AND METHOD OF MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY DEVICE BY USING THE ORGANIC LAYER DEPOSITION APPARATUS

Abstract: Source: US2014370633A An organic layer deposition apparatus includes: a conveyer unit including a transfer unit, a first conveyer unit, and a second conveyer unit;

a loading unit for fixing a substrate to the transfer unit; a deposition unit including a chamber and at least one organic layer deposition assembly; and a measuring unit located between the loading unit and the deposition unit to measure position information of the substrate before an organic layer is deposited onto the

substrate; and an unloading unit for separating, from the transfer unit, the substrate onto which the ...

Assignee(s):(std): SAMSUNG DISPLAY CO ; SAMSUNG DISPLAY CO LTD

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89) Family number: 58072865 (WO14200309A1) © PatBase

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Title: ORGANIC PHOTOVOLTAIC CELL AND METHOD FOR MANUFACTURING SAME

Abstract: Source: WO14200309A1 Disclosed is an organic photovoltaic cell comprising: a substrate; a first electrode on the substrate; a second electrode facing the first electrode; at least one organic layer, comprising a light activation layer, provided between the first electrode and the second electrode; and an electrode modification layer provided between the first electrode and the light activation layer, wherein the electrode modification layer has a single layer structure comprising metal oxide and alkali halide metal. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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90) Family number: 58072868 (WO14200312A1) © PatBase

Title: ORGANIC PHOTOVOLTAIC CELL AND METHOD FOR MANUFACTURING SAME

Abstract: Source: WO14200312A1 Provided is an organic photovoltaic cell comprising: a first electrode; a second electrode facing the first electrode; at least one organic layer, comprising a light activation layer, provided between the first electrode and the second electrode; and an auxiliary electrode on the first electrode, in contact therewith, wherein the surface area of side of the auxiliary electrode closer to the first or second electrode, to which the light is incident, is smaller than the surface area of the side facing same. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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91) Family number: 58073355 (WO14200827A1) © PatBase

Title:

METHODS AND APPARATUSES FOR DELAMINATING PROCESS PIECES

Abstract: Source: WO14200827A1 Methods and apparatuses for delaminating workpieces are provided. In one or more aspects, a method can include processing or otherwise

delaminating the workpiece by separating a delamination stack and a support substrate disposed thereon. The workpiece that can include a sacrificial layer disposed between the delamination stack and the support substrate. The method can include exposing at least a portion of the workpiece to an electrolyte solution, applying an electrical current through the sacrificial layer and the electrolyte solution, selectively removing the ...

Assignee(s):(std):

YE YAN

92) Family number: 54809363 (WO14198112A1) © PatBase

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Title: ORGANIC FILM COATING DEVICE AND FILM COATING

METHOD

Abstract: Source: WO14198112A1 An organic film coating apparatus and a film coating method, wherein the organic film coating apparatus comprises: an evaporation device, an electron emission device and a

spraying device; the evaporation device comprises an evaporation container which is a linear evaporation

container, and an uniform organic gas is produced from the evaporation container; the electron emission device is horizontally provided above the evaporation container, such that the organic gas evaporated from the evaporation container is uniformly charged, thus obtaining a charged organic gas; and ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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93) Family number: 57927483 (US2014353689A) © PatBase

Title: THIN FILM TRANSISTOR AND MANUFACTURING METHOD THEREOF AND DISPLAY COMPRISING THE SAME

Abstract: Source: US2014353689A Provided is a TFT with an improved gate insulator, having an insulator substrate, a gate layer, a gate insulator layer, a active semiconductor layer, and a source and drain electrode

layer, wherein the gate insulator layer includes a first silicon nitride film, a second silicon nitride film disposed on the first silicon nitride film and a third silicon nitride film disposed on the second silicon nitride, and compared to the second silicon nitride film, each of the first silicon nitride film and the third silicon nitride film

is much thinner and has a lower content of ...

Assignee(s):(std): EVERDISPLAY OPTRONICS SHANGHAI LTD ; SHANGHAI EVERDISPLAY OPTRONICS CO LTD

Assignee(s): SHANGHAI EVERDISPLAY OPTRONICS CO

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94) Family number: 57926524 (WO14191708A1) © PatBase

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Title: A LAMINATED OPTO-ELECTRONIC DEVICE AND

METHOD FOR MANUFACTURING THE SAME

Abstract: Source: WO14191708A1 The present invention relates to a opto-electronic device which comprises: (a) an upper device component comprising: a counter electrode made of a metal, a conductive oxide or a

conductive organic compound; (b) a lower device component comprising: a glass or polymeric carrier

substrate, a working electrode comprising a transparent conductive coating adjacent to the glass or polymeric substrate, a blocking layer, an active layer, a hole conducting layer, (c) a conductive adhesive disposed between the upper device component and the lower upper device component, and (d) a ...

Assignee(s):(std): UNIV SWANSEA

Assignee(s): SWANSEA UNIV

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95) Family number: 57926955 (US2014352616A) © PatBase

Title: CRUCIBLE APPARATUS AND DEPOSITION APPARATUS WITH THE SAME

Abstract: Source: US2014352616A A crucible apparatus comprises: a crucible having an opening, the crucible being configured to store an organic material; a heating device surrounding the exterior of the crucible, the heating device being configured to provide heat to the

crucible; at least one thermal ball configured to deliver the heat provided by the heating device to the organic material within the crucible so as to sublimate the organic material; and at least one spray nozzle disposed at the opening of the crucible and configured to spray the sublimated organic material.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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96) Family number: 57879545 (US2014349428A) © PatBase

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Title: SUBSTRATE MOVING UNIT FOR DEPOSITION,

DEPOSITION APPARATUS INCLUDING THE SAME, METHOD OF MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY APPARATUS BY USING THE DEPOSITION APPARATUS, AND ORGANIC LIGHT-EMITTING DISPLAY APPARATUS MANUFACTURED BY USING THE METHOD

Abstract: Source: US2014349428A Provided are a substrate

moving unit for use with a deposition apparatus that allows a deposition material to be precisely deposited on a target site of a substrate. The substrate moving unit includes an electrostatic chuck having a first surface on which a substrate is fixable and a magnetic force applying unit disposed on a second surface of the electrostatic chuck. A deposition apparatus including the substrate moving unit, a method of manufacturing an organic light-emitting display apparatus, and an organic light-emitting display apparatus manufactured

by using the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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97) Family number: 57884893 (WO14188454A1) © PatBase

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Title: PROCESS FOR PREPARATION OF NANOPOROUS

GRAPHENE AND GRAPHENE QUANTUM DOTS

Abstract: Source: WO14188454A1 The present invention discloses a simple and easily scalable process for preparation of two potentially value added carbonaceous materials from graphene. The invention

further discloses simultaneous preparation of graphene quantum dots (GQDs,) and porous graphene (pGr) from

graphene. The invention further relates to nitrogen doped porous graphene having excellent activity towards electrochemical oxygen reduction reaction (ORR).

Assignee(s):(std): COUNCIL SCIENT IND RES

Assignee(s): COUNCIL OF SCIENTIFIC AND INDUSTRIAL RESEARCH

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98) Family number: 55381235 (WO14188629A1) © PatBase

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Title: CHEMICAL VAPOR DEPOSITION RAW MATERIAL

COMPRISING ORGANIC NICKEL COMPOUND, AND CHEMICAL VAPOR DEPOSITION METHOD USING SAID CHEMICAL VAPOR DEPOSITION RAW MATERIAL

Abstract: Source: WO14188629A1 The present invention provides a chemical vapor deposition raw material that

has a low melting point, has a heat stability such that no thermal decomposition occurs during the

vaporization stage, readily decomposes at a low temperature during the film-forming stage, and has the ability to form, in a stable manner, a nickel thin film having a low level of impurities. The present invention pertains to a chemical vapor deposition raw material comprising an organic nickel compound in which a cyclopentadienyl group or a derivative thereof is coordinated to nickel, and a ...

Assignee(s):(std): TANAKA PRECIOUS METAL IND

Assignee(s): TANAKA KIKINZOKU KOGYO K K ; TANAKA KIKINZOKU KOGYO KK

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99) Family number: 57887691 (TW201444994A) © PatBase

Title: DEPOSITION SOURCE AND ORGANIC LAYER DEPOSITION APPARATUS

Abstract: Source: TW201444994A A deposition source for vaporizing an organic material is disclosed. In one aspect, the deposition source includes a discharge tube which releases a fluid including the organic material and a crucible including a first surface adjacent to the

discharge tube which comes into contact with the fluid released from the discharge tube and has a first height. The crucible further includes a second surface extending from the first surface which comes into contact with the fluid flowing from the first surface and has a second height that is lower than the first height.

The ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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100) Family number: 57094349 (KR101426065B) © PatBase

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Title: ROLL TO ROLL VACUUM BUFFER AND ROLL TO ROLL

PRINT SYSTEM HAVING ROLL TO ROLL VACUUM BUFFER

Abstract: Source: KR101426065B The present invention relates to a vacuum buffer connecting an atmosphere with a vacuum and connecting different vacuums for a roll-to-roll printer and a roll-to-roll printer including the same. By using a roll-to-roll flexible substrate to manufacture OLEDs, LCDs, lighting devices, solar cells, etc., the flexible substrate is delivered from an atmospheric pressure into a vacuum, from the vacuum into the atmosphere, and from a vacuum into another vacuum. In the delivery of the substrate, not the entire roll of the flexible substrate, but the flexible substrate ...

Assignee(s):(std): MIN CHI HOON

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101) Family number: 57802446 (US2014342481A) © PatBase

Title: ORGANIC LAYER DEPOSITION APPARATUS AND METHOD OF MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY APPARATUS USING THE SAME

Abstract: Source: US2014342481A An organic layer deposition apparatus and a method of manufacturing an organic light-emitting display device by using the apparatus. In particular, an organic layer deposition apparatus that is

more easily manufactured and is suitable for use in mass production of large substrates while performing high-definition patterning thereon, as well as a method of manufacturing an organic light-emitting display device by using such an apparatus.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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102) Family number: 57789273 (US2014332759A) © PatBase

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Title: ELECTRODE, AN ELECTRONIC DEVICE, AND A METHOD

FOR MANUFACTURING AN OPTOELECTRONIC DEVICE

Abstract: Source: US2014332759A According to various embodiments, an electrode may include at least one layer including a chemical compound including aluminum and titanium.

Assignee(s):(std): INFINEON TECHNOLOGIES DRESDEN GMBH

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103) Family number: 57789274 (US2014332761A) © PatBase

Title: ORGANIC LIGHT-EMITTING DISPLAY APPARATUS AND PHOTO MASK FOR MANUFACTURING SAME

Abstract: Source: US2014332761A An organic light-emitting display apparatus including a switching thin film transistor (TFT) on a substrate, wherein the switching TFT is electrically coupled to a scan line and a data line, a driving TFT electrically coupled to the switching TFT, the driving TFT including a driving semiconductor layer, and an organic light-emitting diode (OLED) electrically coupled to the driving TFT, wherein the driving semiconductor layer includes a first region bending from a first direction to a second direction that intersects with the first direction a second region bending ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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104) Family number: 57789287 (US2014332776A) © PatBase

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Title: MANUFACTURING METHOD OF METAL WIRE AND THIN

TRANSISTOR ARRAY PANEL, AND ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract: Source: US2014332776A A manufacturing method of a wire including: forming a lower layer on a substrate; forming a middle layer on the lower layer; forming an

upper layer on the middle layer; forming, exposing, and developing a photoresist layer on the upper layer to

form a photoresist pattern; and etching the upper layer, the middle layer, and the lower layer by using the photoresist pattern as a mask to form a wire such that the upper layer covers an end of the middle layer.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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105) Family number: 57794123 (WO14182139A1) © PatBase

Title: PHOTOACTIVE LAYER, ORGANIC SOLAR CELL COMPRISING SAME, AND MANUFACTURING METHOD THEREFOR

Abstract: Source: WO14182139A1 The present invention relates to a photoactive layer comprising a compound which comprises electron acceptors, electron donors, and functional groups for reducing surface energy, an organic solar cell comprising the same, and a manufacturing method therefor. The organic solar cell according to the present invention allows electron acceptors and electron donors in a photoactive layer to be uniformly distributed by introducing a compound including functional groups for reducing the surface energy of the electron acceptors into the photoactive layer. ...

Assignee(s):(std):

LG CHEMICAL LTD ; POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION ; LG CHEM LTD

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106) Family number: 57784104 (US2014332779A) © PatBase

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Title: OLED DEVICE AND MANUFACTURING METHOD THEREOF AND DISPLAY PANEL APPLYING THE SAME

Abstract: Source: US2014332779A An organic light emitting device relates to a WOLED based Top emission organic light emitting device and the manufacturing method thereof and a display panel which applies the organic emitting device. In the organic light emitting device, a plurality of emitting units are formed on a substrate

and isolated respectively; a plurality of independent

optical adjustment layers are formed between the reflective electrode and the transparent positive electrode of each emitting unit respectively; a color filter layer is formed above the emitting units. This embodiment applies ...

Assignee(s):(std):

EVERDISPLAY OPTRONICS SHANGHAI LTD ; SHANGHAI EVERDISPLAY OPTRONICS CO LTD

Assignee(s):

SHANGHAI AND PHOTOELECTRIC CO LTD ; SHANGHAI EVERDISPLAY OPTRONICS CO

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107) Family number: 57834240 (KR20140132934A) © PatBase

Title: PREPARATION METHOD OF ORGANIC PHOTOELECTRIC DEVICE COMPRISING 2-D NANO-STRUCTURED ORGANIC PHOTONIC CRYSTAL LAYER

Abstract: Source: KR20140132934A The present invention relates to a method to manufacture an organic photoelectric device comprising a bonding structure of a hole transportation layer and an optical absorption

layer. A method to manufacture an organic photoelectric device comprising a two-dimensional nanostructured organic photonic crystal layer includes: (i) forming a hole transportation layer polymer organic thin film layer on a base, and forming a photonic crystal layer on the surface thereof using capillary lithography;

and (ii) depositing an optical absorption layer organic thin film on a ...

Assignee(s):(std): UNIV KOOKMIN IND ACAD COOP

Assignee(s): KOOKMIN UNIV IND ACADEMY COOPERATION FOUNDATION ; KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATION

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108) Family number: 57783328 (WO14182589A1) © PatBase

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Title: DISPLAY DEVICE INTEGRATED WITH SOLAR CELL

PANEL AND METHODS FOR PRODUCING THE SAME

Abstract: Source: WO14182589A1 The present invention discloses a solar cell panel integrated on a display unit, a display device integrated with the solar cell panel and methods for producing the same. The solar cell panel

integrated on a display unit according to the present invention comprises a photoelectric material layer with

RGB colors comprising red units, green units and blue units, wherein the red units, green units and blue units are arranged corresponding to pixel arrays in the display unit, and one or two of the red units, green units and blue units are made of the photoelectric active ...

Assignee(s):(std): 3M INNOVATIVE PROPERTIES CO

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109) Family number: 57724059 (WO14178798A1) © PatBase

Title: ENCAPSULATION BARRIER STACK COMPRISING DENDRIMER ENCAPSULATED NANOP ARTICLES

Abstract: Source: WO14178798A1 Disclosed is an encapsulation barrier stack, capable of encapsulating a moisture and/or oxygen sensitive article and comprising a multilayer film, wherein the multilayer film comprises: - one or more barrier layer(s) having low moisture

and/or oxygen permeability, and - one or more sealing layer(s) arranged to be in contact with a surface of the at least one barrier layer, thereby covering defects present in the barrier layer, wherein the one or more sealing layer(s) comprise(s) a plurality of dendrimer encapsulated nanoparticles, the nanoparticles being

reactive in that ...

Assignee(s):(std): TERA BARRIER FILMS PTE LTD

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110) Family number: 57710275 (US2014326178A) © PatBase

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Title: ELECTROMAGNETIC VAPOR DEPOSITION APPARATUS

Abstract: Source: US2014326178A The present disclosure discloses an electromagnetic vapor deposition apparatus comprising a plurality of electromagnets which form a plurality of electromagnetic regions when electronic current passes through. A programmable

control equipment is electronically connected to each magnet unit to control magnetic polarity and magnetic

intensity of each magnet unit. The programmable control equipment can adjust the magnetic intensity of each of the plurality of electromagnetic regions to adsorb the metal mask tightly. Meanwhile, the problem of colors mixing is ...

Assignee(s):(std): EVERDISPLAY OPTRONICS SHANGHAI LTD ; SHANGHAI EVERDISPLAY OPTRONICS CO LTD

Assignee(s): SHANGHAI EVERDISPLAY OPTRONICS CO

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111) Family number: 57696705 (US2014320759A) © PatBase

Title: TOUCH TYPE ORGANIC LIGHT EMITTING DIODE DISPLAY DEVICE

Abstract: Source: US2014320759A An organic light emitting diode display device includes a display portion including a substrate, and an organic light emitting diode on the substrate; and an electromagnetic induction sensor portion attached to a bottom of the display portion,

wherein the electromagnetic induction sensor portion includes: a back plate; a protection layer covering a bottom of the back plate; and a loop antenna pattern on at least one of top and bottom surfaces of the back plate.

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s):

LG DISPLAY CO

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112) Family number: 57701451 (US2014322852A) © PatBase

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Title: DEPOSITION APPARATUS AND METHOD OF

MANUFACTURING ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract: Source: US2014322852A A deposition apparatus includes a deposition chamber, a plurality of substrate holders comprising a first holder configured to maintain

a substrate at a first substrate position in the deposition chamber and a second holder configured to

maintain another substrate at a second substrate position in the deposition chamber, a deposition source disposed in the deposition chamber and configured to supply a deposition material to apply onto substrates placed at the first and second substrate positions, and a deposition source transfer mechanism configured to move the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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113) Family number: 57712131 (JP2014214379A) © PatBase

Title: EVAPORATION EQUIPMENT AND EVAPORATION METHOD FOR MASS PRODUCTION

Abstract: Source: JP2014214379A PROBLEM TO BE SOLVED: To provide evaporation equipment and an evaporation method for mass production that, when an organic substance is sublimated from many evaporation sources and vacuum-deposited on a substrate having a

large area, enable wasteful use of organic material to be reduced by reducing distance between the evaporation sources and the substrate thereby simplifying the structure of the evaporation equipment and by improving uniformity of thin film thickness at both ends of the substrate. SOLUTION: The evaporation

equipment for mass production is equipment ...

Assignee(s):(std): GJM CO LTD

Assignee(s):

SET TEMIN CORP ; GJM CO

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114) Family number: 57698665 (WO14174053A1) © PatBase

Title: METHOD FOR PREPARING ORGANIC PHOTOVOLTAIC COATINGS HAVING A CONTROLLED MORPHOLOGY

Abstract: Source: WO14174053A1 The present invention relates to a method for producing a coating containing two organic semiconductor compounds C P and C N, which

are P-type and N-type, respectively, which includes the following steps: (A) depositing, on all or part of the surface of the substrate, a composition including said

compound C P, said compound C N, and a solvent S including at least one compound of formula (I), (II) or (III): in which R is a hydrocarbyl or heterohydrocarbyl group and the total number of carbon atoms in R is at least 2; and (B) removing the solvent S in the resulting deposit ...

Assignee(s):(std):

INST POLYTECHNIQUE BORDEAUX ; CENTRE NAT RECH SCIENT ; RHODIA OPERATIONS ; UNIV BORDEAUX 1 ; UNIV WATERLOO

Assignee(s): BORDEAUX 1 UNIV ; POLYTECHNIQUE DE BORDEAUX

INST ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS ; DE BORDEAUX I UNIV ; OF WATERLOO UNIV

115) Family number: 57612012 (US2014312326A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract: Source: US2014312326A An organic light emitting diode (OLED) display includes: a substrate; a first semiconductor layer and a second semiconductor layer separated from each other on a same surface of the substrate, a first insulating layer on the first semiconductor layer and the second semiconductor layer, a first gate electrode and a second gate electrode respectively overlapping the first semiconductor layer and the second semiconductor layer, a second insulating layer on the first gate electrode and the second gate electrode; a first storage electrode overlapping the first gate ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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116) Family number: 57607577 (WO14173915A1) © PatBase

Title: METHOD FOR ARRANGING OPTOELECTRONIC COMPONENTS ON MOULDS VERFAHREN ZUR ANORDNUNG VON OPTOELEKTRONISCHEN BAUELEMENTEN AUF FORMKOERPERN

Abstract: Source: WO14173915A1 The invention relates to a method for arranging at least one optoelectronic

component on a mould, said method comprising at least one elongation step, wherein the elongation step comprises an elongation of the optoelectronic component in length and/or width and/or thickness elongation/compression, and the arrangement of the elongated optoelectronic component on the mould. Die

Erfindung betrifft ein Verfahren zur Anordnung zumindest eines optoelektronischen Bauelements auf einem Formkoerper umfassendzumindest einen Dehnungsschritt, wobei der Dehnungsschritt eine

Dehnung ...

Assignee(s):(std): HELIATEK ; HELIATEK GMBH

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117) Family number: 57564894 (KR101448041B) © PatBase

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Title: ORGANIC THIN-FILM SOLAR CELL HAVING AN BARRIER

LAYER AND PREPARING METHOD THEREOF

Abstract: Source: KR101448041B The present invention relates to an organic thin-film solar cell having a barrier layer and, more specifically, to an organic thin-film solar cell having a barrier layer which comprises: a flexible

substrate; a transparent electrode layer formed on the flexible substrate; a barrier layer stacked on the

transparent electrode layer; a hole transport layer stacked on the barrier layer; an organic photoactive layer stacked on the hole transport layer; and a metal electrode layer stacked on the organic photoactive layer. The organic thin-film solar cell having a barrier ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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118) Family number: 57612409 (US2014315343A) © PatBase

Title: APPARATUS FOR DEPOSITING ORGANIC FILM ON SUBSTRATE

Abstract: Source: US2014315343A A thin film deposition apparatus includes: a process chamber; and a substrate support comprising a substantially flat surface configured to support a substrate in the process chamber; and a deposition source configured to supply

an organic material for deposition onto the substrate. The apparatus further includes a deposition mask assembly comprising first and second rollers disposed apart from each other in the process chamber; a thin film mask roll having a first end wound about the first roller and a second end wound about the second roller,

wherein a deposition mask ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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119) Family number: 57587274 (WO14167989A1) © PatBase

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Title: VAPOR DEPOSITION MASK, VAPOR DEPOSITION MASK

PRECURSOR, VAPOR DEPOSITION MASK MANUFACTURING METHOD, AND ORGANIC SEMICONDUCTOR ELEMENT MANUFACTURING METHOD

Abstract: Source: WO14167989A1 The purpose of the present invention is to provide: a vapor deposition mask, which

is able to satisfy both increased detail and decreased weight even when size is increased and with which a

highly detailed vapor deposition pattern can be formed even while strength is maintained; a vapor deposition mask manufacturing method and vapor deposition mask precursor with which said vapor deposition mask can be easily manufactured; and an organic semiconductor element manufacturing method capable of manufacturing highly detailed organic semiconductor elements. A metal mask (10) ...

Assignee(s):(std): DAINIPPON PRINTING CO LTD

Assignee(s): DAI NIPPON PRINTING CO ; DAI NIPPON PRINTING CO LTD

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120) Family number: 57481291 (TW201438272A) © PatBase

Title: WHITE LIGHT OLED STRUCTURE AND MANUFACTURING METHOD THEREOF

Abstract: Source: TW201438272A A white light OLED structure and manufacturing method thereof refer to sequentially forming on a transparent substrate the followings: a transparent conductive layer, a hole transport layer, a blue light emission layer, a red light hybrid layer, an electron injection layer and an electrode layer, wherein the red light hybrid layer comprises a red light doping material and an electron transport doping material. The white light OLED has a simple structure and can be efficiently work, by mixing the red light doping material of the red light hybrid layer with the ...

Assignee(s):(std):

NATIONAL YUNLIN UNIV OF SCIENCE AND TECHNOLOGY ; UNIV NAT YUNLIN SCI AND TECH

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121) Family number: 57490927 (WO14156878A1) © PatBase

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Title: ORGANIC THIN-FILM TRANSISTOR

Abstract: Source: WO14156878A1 An organic thin-film transistor containing a compound represented by general formula (1) in a semiconductor active layer, has high carrier mobility, exhibits little change in threshold voltage after repeated driving, and has high solubility in an organic

solvent (in the formula, A1, A2 independently represent a sulfur atom, an oxygen atom, or a selenium atom,

and R1 to R6 independently represent a hydrogen atom or a substituent' at least one of R1 to R6 is a substituent represented by ss-L-R; L represents a bivalent linking group or a bivalent linking group made up of ...

Assignee(s):(std): FUJIFILM CORP

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122) Family number: 57486599 (US2014295141A) © PatBase

Title: MAKING THE SURFACE OF AN ARTICLE VISIBLY LINE FREE

Abstract:

Source: US2014295141A Processes that make the surface of an article comprising a semi-crystalline polymer substrate and vapor deposited with metal visibly line free and having a diffuse reflectance less than 2 percent. Articles metalized by these processes.

Assignee(s):(std): DU PONT

Assignee(s): E I DU PONT DE NEMOURS AND CO

123) Family number: 57558054 (KR20140118023A) © PatBase

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Title: ORGANIC SOLAR CELL AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR20140118023A The present invention provides an organic solar cell capable of providing improved battery characteristics without concern for organic material residue and current leakage thereby, and a method for manufacturing the same. The organic solar cell includes an anode; an organic film disposed on the anode and including a photoactive layer; a first cathode disposed on the organic film; and a second cathode disposed on the first cathode. ...

Assignee(s):(std): KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC

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124) Family number: 57481182 (TW201437454A) © PatBase

Title: FORMING METHOD OF FILM-COATED CLOTHES AND FABRICS, AND STRUCTURE THEREOF

Abstract: Source: TW201437454A The invention relates to a forming method of film-coated clothes and fabrics, and its structure. The polymer nanometer film coating is coated on the surfaces of clothes body or fabrics body to allow its structure of fibers or eiderdowns to have

hydrophobicity. Furthermore, it does not easily absorb dirt or perspiration, which is helpful for maintaining sanitation, or therefore reducing the tedious working method during dyeing and increasing its application range. Simultaneously, ventilation can also be maintained via film-coating pores. The size of

configured ...

Assignee(s):(std): DEREE TECHNOLOGIES CO LTD

Assignee(s):

GERMANY A PRECISION INT INC ; DEREE TECHNOLOGIES CO

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125) Family number: 57491817 (WO14158018A1) © PatBase

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Title: NANOCOMPOSITE, METHOD TO PRODUCE THE SAME, A BARRIER STRUCTURE FOR AN ELECTRONIC DEVICE AND AN OLED COMPRISING THE SAME

Abstract: Source: WO14158018A1 The present invention relates to a nanocomposite comprising primary nanoparticles having a particle size of less than 10 nm said primary nanoparticles forming agglomerates with a bimodal size distribution, dispersed in a polymer matrix, wherein the nanocomposite comprises 10-80 weight percent of the

agglomerates having a particle size of less than 30 nm and less than 20 weight percent of the agglomerates

having a particle size of at least 100 nm, preferably at least 400 nm, based on the total weight of the agglomerates. The surface of the nanoparticles can be ...

Assignee(s):(std): TNO

Assignee(s):

NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO

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126) Family number: 57432892 (US2014284807A) © PatBase

Title: ENCAPSULATION PROCESS AND ASSOCIATED DEVICE

Abstract:

Source: US2014284807A The invention relates to an encapsulation process for an electronic component (2). The component (2) is connected to an electrical contact track composed of a metal layer (101). The process according to the invention comprises the following steps: deposition of a titanium nitride layer (102)

directly on at least part of the electrical contact track (101); and deposition of an aluminium oxide layer (4) by atomic layer deposition, such that the encapsulation layer (4) directly covers the titanium nitride layer (102). The process according to the invention enables ...

Assignee(s):(std): COMMISSARIAT A L ENERGIE ATOMIQUE ; COMMISSARIAT L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; COMMISSARIAT ENERGIE

ATOMIQUE

Assignee(s): COMMISSARIAT A L 8242 ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIESALTERNATIVES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; COMMISSARIAT A L

ENERGIE ATOMIQUE ET AUX ENE ALT

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127) Family number: 57403409 (US2014272298A) © PatBase

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Title: LAYERED COATINGS FOR SAPPHIRE SUBSTRATE

Abstract: Source: US2014272298A A layered coating for a sapphire component is described herein. The sapphire component comprises one or more layers of alumina adhered to the surface of a sapphire member. At least the first layer of alumina adheres to the surface of the

sapphire member filling all defects in the surface forming a pristine new layer that also provides isolation

from damage.

Assignee(s):(std): APPLE INC

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128) Family number: 57418376 (US2014261692A) © PatBase

Title: TUNABLE PHOTOACTIVE COMPOUNDS

Abstract:

Source: US2014261692A Photoactive compositions of matter, methods for their design and synthesis, and various applications of such compositions of matter are disclosed. Such photoactive compositions may, for example, include any one or more of the following: a core moiety; a primary electron donor moiety; an

electron-withdrawing moiety; and an alkyl tail. Some photoactive compositions may further include multiple additional electron donor moieties, electron-withdrawing moieties, and alkyl tails. Applications of such photoactive compositions of matter may include use in photovoltaic cells ...

Assignee(s):(std): MAHER III ROBERT D ; IRWIN MICHAEL D ; HUNT ENERGY ENTPR L L C ; HUNT ENERGY ENTPR LLC ; CHUTE JERRED A ; DHAS VIVEK V

Assignee(s): HUNT ENERGY ENTERPRISES LLC

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129) Family number: 57371739 (US2014260718A) © PatBase

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Title: VACUUM POWERED DEPOSITION APPARATUS

Abstract: Source: US2014260718A A vacuum powered deposition apparatus including a driving unit, a linear motion unit coupled to the driving unit and configured to move linearly according to operation of the driving unit, and an angle restriction unit coupled to the linear motion

unit and configured to move in a direction perpendicular to that of the linear motion unit according

to movement of the linear motion unit.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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130) Family number: 57368404 (WO14136900A1) © PatBase

Title: IONIC-COMPOUND-CONTAINING TREATMENT SOLUTION, ORGANIC ELECTRONIC ELEMENT, AND METHOD FOR MANUFACTURING ORGANIC ELECTRONIC ELEMENT

Abstract: Source: WO14136900A1 An embodiment of the present invention pertains to a treatment solution that contains

an ionic compound and a solvent and is used to make said ionic compound adhere to a surface on which a

hole-transporting layer is formed and/or the surface of said hole-transporting layer.

Assignee(s):(std): HITACHI CHEMICAL CO LTD

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131) Family number: 57328581 (US2014252329A) © PatBase

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Title: DISPLAY PANEL AND METHOD FOR FABRICATING THE

SAME

Abstract: Source: US2014252329A A display panel and a method for fabricating the same are provided. The display panel includes a substrate, a transparent film, and a light-gathering film. The substrate includes organic light emitting diode (OLED) elements. The transparent film is disposed on the substrate. The light-gathering film is disposed on the transparent film. In the fabrication method of the display panel, a substrate is first provided, in which the substrate includes OLED elements. Then, a transparent film is provided, in which the transparent film has a first surface and a second ...

Assignee(s):(std): HANNSTAR DISPLAY CORP

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132) Family number: 54159771 (US2014238105A) © PatBase

Title: DEVICE FOR DETECTING EVAPORATION SOURCE AND METHOD FOR APPLYING THE SAME

Abstract: Source: US2014238105A The present disclosure relates to a process for manufacturing Organic Light-Emitting Diode (OLED) display panel, and in particular to a device and a method for detecting evaporation source. Through installing a mobile detector above a linear evaporation source, the vapor-deposition rate of the whole linear can be timely and effectively detected. The feedback of uniformity of vapor-deposition can be effectively given, and at the same time the abnormity of the vapor-deposition can be found. Meanwhile, in order to increase the yield and quality of product as well as ...

Assignee(s):(std): EVERDISPLAY OPTRONICS SHANGHAI LTD ; SHANGHAI HEHUI PHOTOELECTRIC CO LTD

Assignee(s):

EVERDISPLAY OPTRONICS SHANGHAI LIMITED ; SHANGHAI HEHUI PHOTOELECTRIC CO

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133) Family number: 57230789 (KR101434090B) © PatBase

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Title: ORGANIC PHOTOVOLTAICS HAVING ZINC OXIDE ELECTRON-TRANSFER-LAYER BLENDED WITH CESIUM CARBONATE

Abstract: Source: KR101434090B The present invention relates to an organic solar cell which includes a ZnO electron transport layer with blended cesium carbonate and a manufacturing method thereof. More particularly, the present invention relates to an inverted organic solar cell with high performance capable of reducing a voltage barrier and obtaining high field effect mobility by including the ZnO electron transport layer with the blended cesium carbonate. ...

Assignee(s):(std): UNIV KYUNG HEE UNIV IND COOP

Assignee(s): UNIVERSITY INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITY ; IND COOPERATION GROUP OF KYUNG HEE UNIV

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134) Family number: 56141939 (US2014242367A) © PatBase

Title: BARRIER FILM AND METHODS OF MAKING SAME

Abstract:

Source: US2014242367A A barrier film for blocking moisture and oxygen transmission includes a single layer grown from a precursor of organic silicide by a chemical vapor deposition, having at least silicon (Si) atoms, oxygen (O) atoms and carbon (C) atoms with atomic ratios of C/Si in a range of about 0.1-0.5, and

O/Si in a range of about 2.0-2.5. The Si and O atoms form four bonding structures: Si(-O)4, Si(-O)3, Si(-O)2, and Si(-O)1, in the single layer. In the total amount of the four bonding structures being 100 percent, the bonding structures of Si(-O)4, Si(-O)3, Si(-O)2, and Si(-O)1 are ...

Assignee(s):(std): AU OPTRONICS CORP

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135) Family number: 57308780 (KR20140106034A) © PatBase

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Title: FLEXIBLE ORGANIC SOLAR CELL AND FABRICATING APPARATUS AND METHOD THEREOF

Abstract: Source: KR20140106034A The present invention relates to a flexible organic solar cell, a manufacturing apparatus thereof, and a manufacturing method thereof. Provided are the flexible organic solar cell, the manufacturing apparatus thereof, and the manufacturing method thereof, capable of preventing property changes due to water exposure, preventing damage like a crack in a bending phenomenon, and highly maintaining an electrical property by forming a positive electrode layer on the upper side of a flexible substrate with a conductive polymer layer and a transparent electrode oxide ...

Assignee(s):(std): UNIV KYUNG HEE UNIV IND COOP

Assignee(s): UNIVERSITY INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITY ; IND COOPERATION GROUP OF KYUNG HEE UNIV

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136) Family number: 57260105 (US2014239278A) © PatBase

Title: PHOTOELECTRONIC DEVICE AND IMAGE SENSOR

Abstract:

Source: US2014239278A Disclosed are a photoelectronic device including a first electrode including a first metal; an active layer disposed between the first electrode and a second electrode; and a diffusion barrier layer disposed between the first electrode and the active layer; the diffusion barrier

layer including a second metal, wherein the second metal has a thermal diffusivity that is lower than a thermal diffusivity of the first metal, and wherein the first electrode and the diffusion barrier layer are configured to transmit light, and an image sensor including the photoelectronic ...

Assignee(s):(std): SAMSUNG ELECTRONICS CO LTD

Assignee(s): SAMSUNG ELECTRONICS CO

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137) Family number: 57267533 (WO14129333A1) © PatBase

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Title: OPTICAL COMPONENT

Abstract: Source: WO14129333A1 [Solution] Provided is an optical component which comprises a transparent base, a low reflective film laminated on the transparent base, and an antifouling film laminated on the low reflective film. The antifouling film has a surface roughness (Ra)

of 3 nm or less.

Assignee(s):(std): ASAHI GLASS CO LTD

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138) Family number: 57275848 (TW201434187A) © PatBase

Title: ORGANIC FILM THICKNESS MEASURING UNIT AND ORGANIC FILM DEPOSITING APPARATUS HAVING THE SAME

Abstract: Source: TW201434187A An apparatus for measuring a thickness of an organic thin film and an organic thin film depositing apparatus having the same are disclosed. The apparatus includes a base; a first

support coupled to the base; a second support including first and second ends, the first end being connected to the first support; a detector member connected to the second end of the second support to measure a thickness of an organic thin film deposited on a deposition object; a position adjuster member

configured to adjust a position of the detector member.

Assignee(s):(std):

SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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139) Family number: 57220377 (DE102013101714A1) © PatBase

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Title: VERFAHREN ZUR OPTIMIERUNG VON ABSORBERSCHICHTEN IN OPTOELEKTRONISCHEN BAUELEMENTEN OPTOELECTRONIC COMPONENT I.E. ORGANIC SOLAR CELL, HAS PHOTOACTIVE LAYER SYSTEM INCLUDING INTRINSIC LAYER OF INTRINSIC PHOTOACTIVE MATERIAL, WHERE INTRINSIC LAYER IS FORMED AS NON-CLOSED LAYER OR NON-PLANAR LAYER

Abstract: Source: DE102013101714A1 Die Erfindung betrifft ein Verfahren zur Optimierung der Lichtausbeute und dem Ladungstraegertransport in Absorberschichten von optoelektronischen Bauelementen. Eine Komponente der Photonen-absorbierenden Schicht waechst dabei besonders rau und bildet keine geschlossene Schicht. The component i.e. organic solar cell has an electrode arranged on a flexible substrate (3), and another electrode forming a counter electrode. A photoactive layer system is arranged between the electrodes, where the photoactive layer system includes a donor-acceptor system with ...

Assignee(s):(std): HELIATEK GMBH

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140) Family number: 57220113 (WO14127909A1) © PatBase

Title: FORMULATIONS COMPRISING WASHED SILVER NANOWIRES AND PEDOT

Abstract:

Source: WO14127909A1 The present invention relates to a process for the preparation of a composition which comprises a solvent A, silver nanowires and a conductive polymer, comprising the process steps: (i) the reduction of silver salts by means of a polyol serving as a solvent and reducing agent in the presence of a non-conductive polymer and subsequent precipitation of the silver nanowires thereby formed to obtain silver nanowires, on the surface of which at least some of the non-conductive polymer is adsorbed; (ii) the at least partial removal of the non-conductive polymer adsorbed on the ...

Assignee(s):(std): HERAEUS PRECIOUS METALS GMBH

Assignee(s): HERAEUS PRECIOUS METALS GMBH AND CO KG

141) Family number: 56780341 (KR101412511B) © PatBase

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Title: ORGANIC PHOTOVOLTAIC CELL FOR MAXIMIZING PARALLEL RESISTANCE AND METHODE FOR PREPARING THE SAME

Abstract: Source: KR101412511B The present invention relates to an organic solar cell for maximizing a parallel resistance of a device by forming a hole transport layer on an anode electrode and a portion of a substrate, and a method for manufacturing the same. The organic solar cell of the present invention can increase the parallel resistance despite the use of a highly conductive hole transport layer by forming the hole transport layer only on the upper part of the anode electrode and a substrate region non-opposing a cathode electrode. In other words, the organic solar cell of the present ...

Assignee(s):(std): SOGANG UNIV RES FOUNDATION ; UNIV SOGANG RES FOUNDATION

Assignee(s): SOGANG UNIV RESEARCH FOUNDATION ; SOGANG UNIVERSITY RESEARCH FOUNDATION

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142) Family number: 57267611 (WO14129435A1) © PatBase

Title: STAINING DEVICE

Abstract:

Source: WO14129435A1 A staining device of the present invention stains a resin body by depositing and fixing, onto a resin body installed in an installation section, a sublimation dye attached to a staining substrate. The staining device uses a pump to lower the air pressure inside an enclosing chamber for closing off

the periphery of the resin body (S27). In a state where an attachment surface of the staining substrate to which the dye has attached faces the resin body in a contactless manner, the dye is sublimated and deposited onto the resin body by heating the dye that has attached to ...

Assignee(s):(std): NIDEK KK

Assignee(s): NIDEKCO ; NIDEKCO LTD ; NIDEK CO LTD

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143) Family number: 57224100 (US2014231761A) © PatBase

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Title: DISPLAY SUBSTRATE AND METHOD OF

MANUFACTURING THE SAME

Abstract: Source: US2014231761A A display substrate and a method of manufacturing the same. The display substrate includes a substrate including an active area and an inactive area, an organic light-emitting diode (OLED) unit disposed on the active area of the substrate, and a transmittance measurement pattern unit disposed on the inactive area of the substrate. The transmittance measurement pattern unit includes a deposition assistant layer pattern disposed on the substrate. ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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144) Family number: 54124538 (TWM455017Y) © PatBase

Title: EQUIPMENT FOR POLYMER VACUUM DEPOSITION

Abstract:

Source: CN203782222U The utility model discloses a device for depositing macromolecules in vacuum. The device is characterized in that a flow guide pipe with an opening facing to the cavity wall is arranged in a deposition cavity in a deposition device of parylene, so that a flow field formed by reaction particles of parylene

can evenly flow in the deposition cavity at a uniform speed, thereby improving the effect of coating film; meanwhile, the design of a condensation system is also changed by the device for depositing macromolecules in vacuum, so that the possibility of causing damage due ...

Assignee(s):(std): DEREE TECHNOLOGIES CO LTD

Assignee(s): DEREE TECHNOLOGIES CO

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145) Family number: 57188215 (WO14123060A1) © PatBase

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Title: METHOD FOR FORMING BORON DIFFUSION LAYER AND

METHOD FOR MANUFACTURING SOLAR BATTERY CELL

Abstract: Source: WO14123060A1 The present invention provides a method for forming a boron diffusion layer, the method being capable of adequately removing by oxidation a boron silicide layer formed on a silicon

substrate, and obtaining a high-quality boron silicate glass layer. The present invention is a method for

forming a boron diffusion layer in which the boron diffusion layer is formed on a silicon substrate by means of a boron diffusion process comprising a first step for heat-diffusing boron on the silicon substrate, and a second step for oxidizing the boron silicide layer formed on the ...

Assignee(s):(std): PVG SOLUTIONS INC

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146) Family number: 57141882 (KR20140099131A) © PatBase

Title: ORGANIC SOLAR CELLS HAVING WATER REMOVING MEMBRANE FORMED ACTIVE LAYER AND PREPARATION METHOD THEREOF

Abstract: Source: KR20140099131A The present invention relates to an organic solar cell having an inside/outside moisture adjustment activity and a surface roughness increase activity of a photoactive layer and a method for manufacturing the same. More specifically, the present invention relates to a method for manufacturing an organic solar cell and an organic solar cell manufactured by the same. The method comprises the steps of: applying isopropanol on a photoactive layer after four to twenty minutes have elapsed from the coating of the photoactive layer; and removing the isopropanol from the ...

Assignee(s):(std): KYUNGPOOK NAT UNIV IND ACAD

Assignee(s): KYUNGPOOK NATIONAL UNIV IND ACADEMIC

COOPERATION FOUNDATION ; KYUNGPOOK NATIONAL UNIVERSITY INDUSTRY ACADEMIC COOPERATION FOUNDATION

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147) Family number: 57138193 (WO14119943A1) © PatBase

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Title: METHOD FOR FABRICATING LARGE METAL NANOFIBER

ELECTRODE ARRAY USING ALIGNED METAL NANOFIBER

Abstract: Source: WO14119943A1 The present invention relates to a method for fabricating a large metal nanofiber electrode array using an aligned metal nanofiber,

including the steps of: preparing a metal precursor/organic polymer complex solution by mixing

a metal precursor and an organic polymer in a distilled water or an organic solvent; when the metal precursor/organic polymer complex solution injected into the nozzle of an electric field assisted robotic nozzle printer forms a Taylor cone at the end of the nozzle by applying an electric field, forming an aligned metal precursor/organic ...

Assignee(s):(std): POSTECH ACAD IND FOUND

Assignee(s):

POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION

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148) Family number: 57085967 (US2014209157A) © PatBase

Title: FORMING OF OPTOELECTRONIC DEVICES, PARTICULARLY OF INVERTED-TYPE OPV CELLS

Abstract: Source: US2014209157A This forming involves a composition including: poly(3,4-ethylenedioxythiophene) or PEDOT; polystyrene sulfonate or PSS; a compound (A) having formula: with 0<x/y<1; Ar1 and Ar2 representing two aromatic rings,

which may be identical or different; Ar1 and/or Ar2 comprising at least one hydrophobic substituent on its ring.

Assignee(s):(std): COMMISSARIAT A L ENERGIE ATOMIQUE ; COMMISSARIAT ENERGIE ATOMIQUE

Assignee(s): COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX

ENERGIESALTERNATIVES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; COMMISSARIAT A L 8242 ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

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149) Family number: 57095934 (JP2014167165A) © PatBase

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Title: VACUUM EVAPORATION APPARATUS AND VACUUM

EVAPORATION METHOD

Abstract: Source: JP2014167165A PROBLEM TO BE SOLVED: To provide a vacuum evaporation apparatus which capable of increasing uniformity of the total thickness of an organic EL film.SOLUTION: A vacuum evaporation

apparatus includes: a guide path to transport evaporation material obtained in an evaporation

source; and a discharge member which discharges the evaporation material flowing from the guide path into a vapor-deposited member. The discharge member includes: a dispersion vessel 7 for diffusing the evaporation material; and multiple nozzle members 8 each of which is protrusively provided toward ...

Assignee(s):(std): HITACHI SHIPBUILDING ENG CO ; HITCHI ZOSEN CORP

Assignee(s):

HITACHI ZOSEN CORP ; HITACHI ZOSEN CORPORATION

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150) Family number: 57053756 (WO14115515A1) © PatBase

Title: ELECTRONIC DEVICE AND MANUFACTURING METHOD THEREOF, AND FORMATION METHOD OF LAMINATED STRUCTURE

Abstract: Source: WO14115515A1 There is provided a formation method of a laminated structure, including forming a laminated structure formed from, from a base (10) side, an organic insulating material layer (15) and a

polycrystalline organic semiconductor material layer (16) by coating and drying on the base a solution in which an organic semiconductor material and an organic insulating material are dissolved in a solvent, in which the mass ratio of the (organic insulating material / organic semiconductor material) is greater than 1 and

less than 3.

Assignee(s):(std):

SONY CORP

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151) Family number: 57049559 (KR20140093832A) © PatBase

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Title: MASS PRODUCTION METHOD OF SOLUTION FOR

FORMING PHOTOACTIVE LAYER OF ELECDTRONIC DEVICE AND ELECTRONIC DEVICE COMPRISING PHOTOACTIVE LAYER HAVING THREE-DIMENSIONAL NONWOVEN STRUCTURE

Abstract: Source: KR20140093832A According to the present

invention, an apparatus for forming a photoactive layer is provided to form a photoactive layer on an electronic

device. The device includes: a solution supply part containing a solution where a polymer material having a solubility parameter difference (DELTAdelta) with a solvent; a transportation unit which is connected to the solution supply part via a pipe, and is configured to transport the solution by predetermined flux from the solution supply part; a cooling unit which is connected to the transportation unit via a pipe, and cools the ...

Assignee(s):(std): UNIV YONSEI IACF

Assignee(s): ACADEMIC COOPERATION FOUNDATION YONSEI UNIV IND ; INDUSTRY ACADEMIC COOPERATION FOUNDATION YONSEI UNIVERSITY

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152) Family number: 56896128 (US2014197853A) © PatBase

Title: USE OF A POLYMER MIXTURE AS A SENSOR MIXTURE

Abstract: Source: US2014197853A A polymer mixture is provided suitable for use in a cable as a sensor polymer mixture for determining the mechanical and/or electrical stability or aging of a cable. The method may use the determination of changes in the polymer mixture, especially for determination of the aging and/or stability, for example as a measure for estimation of the wear or the remaining service life of a cable having the polymer mixture. ...

Assignee(s):(std): NEXANS

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153) Family number: 56904235 (WO14108015A1) © PatBase

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Title: PREPARATION METHOD FOR CARBON NANOTUBE

TRANSPARENT COMPOSITE ELECTRODE

Abstract: Source: WO14108015A1 A preparation method for a carbon nanotube transparent composite electrode. One or more layered structures are formed by taking a super-aligned carbon nanotube film (2) as a conductive substrate and a conductive polymer as a carrier. A formed transparent CNT composite film (3) shows excellent conductivity. A transparent CNT composite electrode of large areas can be manufactured using mechanical processes according to an economical and simple way at a room temperature, and the transparent CNT composite electrode can be applied to devices, such as flexible OLED ...

Assignee(s):(std): BEIJING AGLAIA TECHNOLOGY AND DEV CO LTD ; BEIJING AGLAIA TECHNOLOGY DEV CO LTD ;

GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS CO LTD

Assignee(s): BEIJING AGLAIA TECHNOLOGY DEVELOPMENT CO ;

GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS CO ; BEIJING AGLAIA TECHNOLOGY DEVELOPMENT CO

LTD ; PHOTOELECTRIC MATERIAL CO LTD GUANGDONG AGLAIA ; BEIJING AGLAIA TECHNOLOGY AND DEVELOPMENT CO ; BEIJING AGLAIA TECHNOLOGY AND DEVELOPMENT CO LTD

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154) Family number: 56939182 (KR20140090741A) © PatBase

Title: METHOD OF MANUFACTURING PHOTOVOLTAIC MODULE BY USING CONTINUOUS PROCESS

Abstract: Source: KR20140090741A The present invention provides a method for manufacturing an organic solar cell module which includes: a first step of forming an organic layer by coating a flexible film with an organic material by a slot die method; and a second step of patterning the organic layer by laser. The first step and the second step are continuously performed in the same chamber. The organic solar cell module includes a bulk heterojunction photoactive layer. ...

Assignee(s):(std): UNIV KONKUK IND COOP CORP

Assignee(s):

KONKUK UNIV INDUSTRIAL COOPERATION CORP ; KONKUK UNIVERSITY INDUSTRIAL COOPERATION CORP

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155) Family number: 56938814 (KR20140090524A) © PatBase

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Title: ORGANIC PHOTOVOLATAIC UNIT CELL CAPABLE OF

EXTENDING LIGHT PATH AND METHOD THEREOF

Abstract: Source: KR20140090524A The present invention relates to an organic photovoltaic unit cell which includes at least one photoactive layer composed of a bulk heterojunction layer made of donor materials and acceptor materials. The present invention provides the organic photovoltaic unit cell to input at least part of sunlight to the photoactive layer at a preset angle with an incident direction of the organic photovoltaic unit cell. The organic photovoltaic unit cell promotes the efficiency of photoelectric conversion by increasing or amplifying a path of incident light. ...

Assignee(s):(std): UNIV KONKUK IND COOP CORP

Assignee(s): KONKUK UNIV INDUSTRIAL COOPERATION CORP ; KONKUK UNIVERSITY INDUSTRIAL COOPERATION CORP

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156) Family number: 56938886 (KR20140090379A) © PatBase

Title: ORGANIC SOLAR CELL HAVING TRANSPARENT ELECTRODES AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20140090379A The present invention relates to an organic solar cell capable of forming a top electrode and a bottom electrode of a solar cell with transparent electrodes doped with impurities. The organic solar cell includes a substrate, a first electrode which is formed on the upper side of the substrate, a polymer material layer which is formed on the upper side of the first electrode, and a second electrode which is formed on the upper side of the polymer material layer. The first electrode is formed with a first type doped transparent electrode. The polymer material layer ...

Assignee(s):(std):

WONKWANG UNIV CT IND ACAD COOP

Assignee(s): WONKWANG UNIVERSITY CENTER FOR INDUSTRY ACADEMY COOPERATION ; WONKWANG UNIV CENTER FOR IND ACADEMY COOPERATION

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157) Family number: 56831679 (US2014183458A) © PatBase

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Title: ORGANIC LIGHT-EMITTING DISPLAY APPARATUS AND

METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014183458A In an aspect, an organic light-emitting display apparatus is provided, including a display substrate; a sealing substrate configured to face the display substrate; a sealing material for bonding

the display substrate and the sealing substrate and surrounding a circumference of the display unit; and a

bonding layer comprising a plurality of through holes, wherein the plurality of through holes comprise partition walls therein.

Assignee(s):(std):

SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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158) Family number: 56832925 (US2014183502A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract: Source: US2014183502A An OLED display includes a substrate; a first electrode on the substrate; an organic emission layer on the first electrode; a second electrode on the organic emission layer; an organic layer on the second electrode and corresponding to the first electrode; and an auxiliary electrode contacting the second electrode and neighboring the organic layer. ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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159) Family number: 56885545 (TW201425648A) © PatBase

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Title: ETCHANT COMPOSITION, METHOD OF FORMING METAL

PATTERN AND METHOD OF MANUFACTURING AN ARRAY SUBSTRATE

Abstract: Source: TW201425648A Accordingly, the present invention has been made to solve the above-mentioned problems, and an object of the present invention is to

provide an etchant composition which reduces the side etching rate for a silver (Ag) or silver alloy mono-layer

film or a multi-layer film consisting of the mono-layer film and an indium oxide film, which exhibits uniform etching characteristics without damaging the lower data line and generating a residue and which has improved long-term storability, a method of forming a metal pattern using the same, and a method of manufacturing an ...

Assignee(s):(std): DONGWOO FINE CHEM CO LTD

Assignee(s):

TECO FINE CHEM LTD ; TECO FINECHEM CORP ; DONGWOO FINE CHEM CO

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160) Family number: 56885312 (KR20140087817A) © PatBase

Title: INLINE TYPE DEPOSITION EQUIPMENT USING THE ROLL TYPE MASK

Abstract: Source: KR20140087817A The present invention relates to a deposition apparatus used for forming a thin film on a semiconductor, OLED, etc. The deposition apparatus using a roll type mask according to the present invention comprises: a deposition process chamber; a substrate support unit located in the deposition process chamber and on which a substrate is located; a continuous mask; a mask support unit to enable the supply and recovery of the continuous mask while both ends of the continuous mask are wound; and a deposition material supply device to supply a deposition material to the ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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161) Family number: 56788778 (US2014186619A) © PatBase

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Title: COATED ARTICLE AND METHOD FOR MAKING THE

SAME

Abstract: Source: US2014186619A A coated article includes a substrate and an anti-fingerprint film formed on the substrate. The anti-fingerprint film is a mixture layer of tin and polyformaldehyde, a mixture layer of indium

and polyformaldehyde, or a polyformaldehyde layer. The anti-fingerprint film has an excellent abrasion

resistance. A method for making the coated article is also described.

Assignee(s):(std): FIH HONG KONG LTD ; FOXCONN HONG KONG CO LTD

; SHENZHEN FUTAIHONG PREC IND CO ; SHENZHEN FUTAIHONG PRECISION IND CO LTD

Assignee(s): SHENZHEN FUTAIHONG PRECISION IND CO ;

SHENZHEN FUTAIHONG PRECISION IND

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162) Family number: 56881328 (KR20140085858A) © PatBase

Title: A LINEAR TYPE EVAPORATOR FOR THIN LAYERS DEPOSITION APPARATUS

Abstract: Source: KR20140085858A The present invention relates to a linear evaporation source of a thin layer deposition apparatus. By preparing a crucible to be longer in the horizontal direction while making a coupling between the crucible and a distributor as an

insertion type, and blocking a heater for heating the distributor having distribution holes and multiple jetting nozzles on top, the height of a chamber can be drastically reduced, and an installation of the heater can be facilitated while reducing the number of heaters installed inside a heater block.

Assignee(s):(std): SUNIC SYSTEM LTD

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163) Family number: 56881773 (KR20140086333A) © PatBase

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Title: CRUCIBLE ASSEMBLY

Abstract: Source: KR20140086333A The present invention relates to a crucible assembly having an improved structure of a heating unit heating a crucible to uniformly maintaining the evaporation rate of an organic material accommodated in the crucible.

According to the present invention, the crucible assembly comprises a crucible accommodating an

organic material; an external heater which is arranged on the outside of the crucible and heats the organic material accommodated in the crucible by reciprocating in a longitudinal direction of the crucible; and an internal heater which is arranged in the ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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164) Family number: 56881775 (KR20140086334A) © PatBase

Title: ORGANIC MATERIAL SOURCE ASSEMBLY

Abstract:

Source: KR20140086334A The present invention relates to an evaporation source assembly having an improved ejection structure ejecting an organic material evaporated in a crucible. According to the present invention, the evaporation source comprises: a container-shaped crucible accommodating an organic

material; a heater unit which is arranged in the crucible and provides heat to evaporate the organic material accommodated in the crucible; and at least two inner plates which are alternately stacked up each other on the organic material accommodated in the crucible. The evaporation source ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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165) Family number: 56877949 (KR20140085116A) © PatBase

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Title: THIN FILM DEPOSITION APPARATUS

Abstract: Source: KR20140085116A The present invention relates to a thin film depositing apparatus capable of reducing possibility of changing a material by cooling the material before the material is supplied to a crucible and heated during a process of supplying the material to the crucible and also performing a thin film depositing process for a long time by partially heating and evaporating the material supplied to the crucible and supplying the material supplied to a crucible and evaporating the material at the same time in an organic light emitting diodes (OLED) thin film deposition ...

Assignee(s):(std): SUNIC SYSTEM LTD

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166) Family number: 56333045 (KR101390413B) © PatBase

Title: HEATING DEVICE OF EVAPORATION SOURCE

Abstract:

Source: KR101390413B A heating device of an evaporation source according to an embodiment of the present embodiment includes: a tubular first reflector surrounding the outer circumference of a crucible so that the crucible is provided therein; a heating wire fixing part including a pair of ring insulators vertically

provided in such a manner that the ring insulators are spaced apart from each other in a longitudinal direction in the first reflector; and a heating wire wound around the outer circumference of each ring insulator while vertically forming a zigzag pattern by alternately passing ...

Assignee(s):(std): SUNIC SYSTEM LTD

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167) Family number: 56791125 (US2014186618A) © PatBase

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Title: COATED ARTICLE AND METHOD FOR MAKING SAME

Abstract: Source: US2014186618A A coated article includes a substrate, a layer formed on the substrate. The layer containing polytetrafluroethylene and aluminum oxide, and the weight ratio of the aluminum oxide to the polytetrafluroethylene being between about 1:1.5 and

1:1.2. A method for making the coated article is also described.

Assignee(s):(std): FIH HONG KONG LTD ; FOXCONN HONG KONG CO LTD ; SHENZHEN FUTAIHONG PREC IND CO ; SHENZHEN FUTAIHONG PRECISION IND CO LTD

Assignee(s): SHENZHEN FUTAIHONG PRECISION IND CO

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168) Family number: 56878016 (KR20140085163A) © PatBase

Title: SLOT DIE STRUCTURE OF POLYMER SOLAR CELL MODULE AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR20140085163A The present invention relates to a slot die structure of an organic solar cell module and a method for manufacturing the same. More particularly, the present invention relates to a slot die structure of an organic solar cell module capable of easily arranging the use of an electrode of a module while simplifying a process by coating the entire surface of the module; and a method for manufacturing the same. The slot die structure of the organic solar cell module includes: a substrate (100) formed of a conductor and wound around a roll in a sheet form or unwound ...

Assignee(s):(std):

KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC

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169) Family number: 56830051 (WO14104976A1) © PatBase

Title: ORGANIC ELECTRONIC DEVICES

Abstract: Source: WO14104976A1 The present invention provides a product and manufacturing method for an organic electronic device. The electronic device comprises a first conductive layer and a second conductive layer, an organic layer disposed between said first and second conductive layer and an amphiphilic layer disposed between said organic layer and the second conductive layer. ...

Assignee(s):(std):

AGENCY SCIENCE TECH AND RES

Assignee(s): AGENCY FOR SCIENCE TECHNOLOGY AND RESEARCH

170) Family number: 56841966 (KR20140083503A) © PatBase

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Title: EVAPORATION SOURCE AND APPARATUS FOR

DEPOSITION HAVING THE SAME

Abstract: Source: KR20140083503A Disclosed are an evaporation source and a deposition apparatus having the same. According to an embodiment of the present invention, an evaporation source capable of forming a thin film on

a substrate by heating an evaporating material includes a container-like crucible for accommodating the

evaporating material on the inside; a transfer pipe connected to the top end of the crucible on one end; a nozzle unit laterally connected to the top end of the transfer pipe to be funneled to the transfer pipe, while including a dispersion pipe having a jet nozzle formed toward ...

Assignee(s):(std): SUNIC SYSTEM LTD

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171) Family number: 56829004 (WO14103756A1) © PatBase

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Title: GAS-BARRIER FILM

Abstract: Source: WO14103756A1 Provided is a gas-barrier film which exhibits a low water vapor permeability and high impact resistance. A gas-barrier film comprises a substrate, a barrier layer that is formed on one surface of the substrate and that contains silicon, oxygen and

carbon, and an organic layer, said barrier layer satisfying all of the requirements: (i) in a region

occupying at least 90 percent of the film thickness of the barrier layer, the atomic ratio of oxygen, the atomic ratio of silicon, and the atomic ratio of carbon decrease in this order; (ii) the carbon distribution curve has at ...

Assignee(s):(std): KONICA MINOLTA INC

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172) Family number: 56840737 (TW201425540A) © PatBase

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Title: ETCHANT COMPOSITION AND METHOD OF FORMING

METAL PATTERN AND METHOD OF MANUFACTURING AN ARRAY SUBSTRATE

Abstract: Source: TW201425540A Accordingly, the present invention has been made to solve the above-mentioned problems, and an object of the present invention is to

provide an etchant composition which reduces the side etching rate for a silver (Ag) or silver alloy mono-layer

film or a multi-layer film consisting of the mono-layer film and an indium oxide film, which exhibits uniform etching characteristics without damaging the lower data line and generating a residue and which has improved long-term storability, a method of forming a metal pattern using the same, and a method of manufacturing an ...

Assignee(s):(std): DONGWOO FINE CHEM CO LTD

Assignee(s):

TECO FINE CHEM LTD ; TECO FINECHEM CORP ; DONGWOO FINE CHEM CO

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173) Family number: 56772884 (WO14094741A3) © PatBase

Title: VERFAHREN ZUM HERSTELLEN EINES ORGANISCHEN BAUELEMENTES SOWIE ORGANISCHES BAUELEMENT METHOD FOR PRODUCING AN ORGANIC COMPONENT AND ORGANIC COMPONENT

Abstract: Source: WO14094741A3 Die Erfindung betrifft ein Verfahren zum Herstellen eines organischen Bauelementes, bei dem ein Schichtstapel mit einer

Elektrode (1), einer Gegenelektrode (7) sowie einer oder mehreren organischen Schichten (2, 3) hergestellt wird und bei dem in dem Schichtstapel eine Funktionsschicht (4, 5) mit Metallpartikel-Nanoclustem (5) gebildet wird, wobei hierbei in dem Schichtstapel eine Basisschicht (4) aus einem anorganischen Material

auf einem darunterliegenden Stapelbereich (3) hergestellt wird, welcher wenigstens eine organische Schicht umfasst, und auf der Basisschicht ...

Assignee(s):(std):

TECH UNIV DRESDEN

Assignee(s): TECHNISCHE UNIV DRESDEN

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174) Family number: 56822991 (KR20140081209A) © PatBase

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Title: APPARATUS FOR VAPOR DEPOSITION OF THIN FILM

Abstract: Source: KR20140081209A The present invention relates to an organic thin film deposition apparatus which includes an area controlling plate between two linear deposition sources which spray a host material and a dopant material, respectively. The present

invention relates to a deposition apparatus for forming the organic thin film on a substrate, comprising a

deposition chamber; a first linear deposition source; a second linear deposition source which is installed to be parallel with the first linear deposition source; a plurality of first nozzle groups which are formed in a line in the first ...

Assignee(s):(std): SUNIC SYSTEM LTD

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175) Family number: 53057592 (WO14096792A1) © PatBase

Title: DEPOSITION OF ELECTRICALLY CONDUCTIVE POLYMERS

Abstract: Source: WO14096792A1 There is described a method for the vapour phase deposition of an intrinsically conducting polymer onto a substrate, which method comprises providing a precursor for the polymer and coupling the precursor together to form the required

polymer, wherein the precursor is provided in the form of an atomised spray and substrates produced by such methods.

Assignee(s):(std): P2I LTD ; SURFACE INNOVATIONS LTD

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176) Family number: 56736479 (KR101410942B) © PatBase

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Title: ORGANIC SOLAR CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR101410942B According to an embodiment of the present invention, an organic solar cell includes a substrate; a transparent electrode which includes a base layer in the form of a thin film arranged on the substrate, and a 3D shaped nanostructure layer arranged on the base layer; an active layer formed on the transparent electrode; and an upper electrode formed on the active layer. ...

Assignee(s):(std): POSCO ; POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION

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177) Family number: 56780172 (KR20140079105A) © PatBase

Title: ORGANIC SOLAR CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20140079105A According to the present invention, an organic solar cell includes: a substrate; a metal electrode including a base layer on an upper surface of the substrate, and a three dimensional nanostructure layer on an upper surface of the base layer; an active layer formed on an upper surface of the metal electrode; and a transparent electrode formed on an upper surface of the active layer. ...

Assignee(s):(std): POSCO ; POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION

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178) Family number: 56726505 (US2014166998A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DISPLAY DEVICE

HAVING BUILT-IN TOUCH PANEL AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014166998A An organic light emitting diode (OLED) display device having a built-in touch panel and a manufacturing method thereof in which an OLED array and a touch array are formed on a flexible substrate and thus the OLED display device has flexibility, and a flexible printed circuit board for driving the touch array is integrally formed with a printed circuit board for driving the OLED array and thus manufacturing costs are reduced are disclosed. The OLED display device includes an OLED array formed on a lower flexible substrate, a touch array formed on an upper flexible ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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179) Family number: 56716508 (US2014166989A) © PatBase

Title: MANUFACTURING FLEXIBLE ORGANIC ELECTRONIC DEVICES

Abstract: Source: US2014166989A A method of forming

microelectronic systems on a flexible substrate includes depositing (typically sequentially) on a first side of the flexible substrate at least one organic thin film layer, at least one electrode and at least one thin film encapsulation layer over the at least one organic thin

film layer and the at least one electrode, wherein depositing the at least one organic thin film layer, depositing the at least one electrode and depositing the at least one thin film encapsulation layer each occur under vacuum and wherein no physical contact of the at least ...

Assignee(s):(std): UNIVERSAL DISPLAY CORP

Assignee(s): UNIVERSAL DISPLAY CORPORATION

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180) Family number: 56729812 (WO14089708A1) © PatBase

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Title: CONDUCTING NANOCOMPOSITE MATRIX AND USES

THEREOF

Abstract: Source: WO14089708A1 The present disclosure relates to conductive polymers referred to as nanocomposite conducting matrix (NCM). The present NCMs may be used, for example, in conductive coatings such as electromagnetic shielding or seed layer for electrochemical deposition, in ink-jet printing as a conductive ink for conventional and 3D printings, in wearable electronics, in electrochromic devices, in electronic interconnects and electronic devices such as organic and inorganic transistors and diodes, displays, organic and inorganic photovoltaics, organic and inorganic light emitting ...

Assignee(s):(std): P P HOLDINGS INC SA

Assignee(s): SAPP HOLDINGS INC

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181) Family number: 56726489 (US2014166973A) © PatBase

Title: COMPOSITION HAVING DISPERSION OF NANO-PARTICLES THEREIN AND METHODS OF FABRICATING SAME

Abstract: Source: US2014166973A Compositions having a dispersion of nano-particles therein and methods of fabricating compositions having a dispersion of nano-particles therein are described. In an example, a

method of forming a composition having a dispersion of nano-particles therein includes forming a mixture of semiconductor nano-particles and discrete prepolymer molecules. A polymer matrix is formed from the discrete prepolymer molecules. The polymer matrix includes a dispersion of the semiconductor nano-

particles therein. In another example, a composition includes a medium including discrete ...

Assignee(s):(std): KURTIN JUANITA N ; MASSON GEORGETA ; PACIFIC

LIGHT TECHNOLOGIES CORP

Assignee(s): PIVOTAL INVESTMENTS LLC COLLATERAL AGENT AS

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182) Family number: 56716033 (WO14091010A3) © PatBase

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Title: ORGANISCHES, ELEKTRONISCHES BAUELEMENT UND VERFAHREN ZUM HERSTELLEN EINES ORGANISCHEN, ELEKTRONISCHEN BAUELEMENTES ORGANIC, ELECTRONIC COMPONENT AND METHOD FOR PRODUCING AN ORGANIC, ELECTRONIC COMPONENT

Abstract: Source: WO14091010A3 In verschiedenen Ausfuehrungsbeispielen wird ein organisches, elektronisches Bauelement (200, 300) bereitgestellt, das organische, elektronische Bauelement (200, 300)

aufweisend: einen Traeger (102); einen flaechigen, elektrisch aktiven Bereich (220) auf oder ueber dem Traeger (102), wobei der elektrisch aktive Bereich (220) einen flaechigen, optisch aktiven Bereich (212) und einen optisch inaktiven Bereich (214) aufweist;

wobei der optisch aktive Bereich (212) zum Aufnehmen und/oder Bereitstellen von elektromagnetischer Strahlung eingerichtet ist; eine Haftschicht ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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183) Family number: 53344362 (US2014159012A) © PatBase

Title: ARRAY SUBSTRATE AND METHOD FOR MANUFACTURING THE SAME, DISPLAY DEVICE

Abstract: Source: US2014159012A Embodiments of the present invention disclose an array substrate comprising a plurality of pixel units disposed on a base substrate, the pixel units comprising: a thin film transistor structure formed on the base substrate; and an OLED driven by the thin film transistor structure, the OLED disposed in a pixel region of the pixel units, the OLED comprising sequentially in a direction away from the base substrate a first electrode which is transparent, a light-emitting layer and a second electrode which reflects light; a transflective layer disposed between the OLED ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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184) Family number: 53344350 (US2014159022A) © PatBase

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Title: ARRAY SUBSTRATE, METHOD FOR FABRICATING THE SAME, AND OLED DISPLAY DEVICE

Abstract: Source: US2014159022A This invention provides an array substrate, a method for fabricating the same, and an OLED display device, which can solve the technical problem that the existing OLED display device has low luminous efficiency. Each pixel unit of the array substrate comprises: a TFT drive layer; an OLED further away from the substrate than the TFT drive layer and driven by it, the OLED sequentially comprises a first electrode, a light emitting layer, and a transparent second electrode, wherein the first electrode is a reflection layer, or the first electrode is transparent and has ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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185) Family number: 53344368 (US2014159009A) © PatBase

Title: ARRAY SUBSTRATE, MANUFACTURING METHOD THEREOF AND DISPLAY DEVICE

Abstract: Source: US2014159009A Embodiments of the present invention provide an array substrate, a manufacturing method thereof and a display device. The array substrate comprises a plurality of pixel units disposed on a substrate, each pixel unit including a thin-film transistor (TFT) structure and an organic light-emitting diode (OLED) driven by the TFT structure. The OLED includes a transparent first electrode, an emission layer and a second electrode for reflecting light in sequence in a direction away from the substrate. A color filter disposed between a layer provided with the OLED and a ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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186) Family number: 53465282 (US2014159010A) © PatBase

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Title: ARRAY SUBSTRATE, MANUFACTURING METHOD THEREOF AND OLED DISPLAY DEVICE

Abstract: Source: US2014159010A An array substrate, a manufacturing method thereof and an OLED display device are provided. The array substrate comprises a plurality of pixel units disposed on a substrate, wherein each pixel unit includes a TFT structure formed on the substrate and an OLED driven by the TFT structure; the TFT structure includes a drive TFT. A drain electrode of the drive TFT is connected with the OLED; a gate electrode and the drain electrode of the drive TFT are at least partially overlapped to form a storage capacitor. A recess is formed in an insulating layer interposed ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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187) Family number: 53344524 (US2014159007A) © PatBase

Title: ARRAY SUBSTRATE AND FABRICATION METHOD THEREOF, DISPLAY DEVICE

Abstract: Source: US2014159007A Embodiments of the invention disclose an array substrate and a fabrication method thereof, and a display device. The array substrate comprises a plurality of pixel units disposed on a base substrate. Each pixel unit comprises a thin-film transistor region and a display region. A thin-film transistor structure is formed in the thin-film transistor region, and an organic light-emitting diode. The organic light-emitting diode comprises a transparent first electrode, a light-emitting layer, and a second electrode for reflecting light that are sequentially formed. A ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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188) Family number: 56649924 (US2014159002A) © PatBase

Page 321: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC LIGHT EMITTING DIODE DEVICE AND

METHOD FOR FABRICATING THE SAME

Abstract: Source: US2014159002A Disclosed are an organic light emitting diode device, and a method for fabricating the same. The organic light emitting diode device comprises a non-active area formed outside an active

area of a substrate; a switching thin film transistor and a driving thin film transistor at each of the pixel

regions; a planarization layer on the substrate; a first electrode on the planarization layer; a bank formed in the non-active area outside each pixel region; an organic light emitting layer on the first electrode; a second electrode on an entire surface of the substrate; a first ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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189) Family number: 54647853 (US2014159004A) © PatBase

Title: ACTIVE MATRIX ORGANIC LIGHT EMITTING DIODE PANEL AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2014159004A The invention discloses an active matrix organic light emitting diode panel and a method for manufacturing the same. The active matrix organic light emitting diode panel includes a substrate, an organic film formed on the substrate, and a plurality

of red, green and blue organic light emitting diodes formed on the organic film. A recess or protrusion is formed in the organic film in a region corresponding to the blue organic light emitting diode. The blue organic light emitting diode is formed on the recess or protrusion, and the surface area of the recess or

protrusion ...

Assignee(s):(std): SHANGHAI TIANMA MICRO ELECT CO ; SHANGHAI TIANMA MICROELECTRONICS CO LTD

Assignee(s): SHANGHAI TIANMA MICRO ELECTRONICS CO ; SHANGHAI TIANMA MICRO ELECTRONICS CO LTD ; SHANGHAI TIANMA MICROELECTRONICS CO

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190) Family number: 56670081 (KR20140071821A) © PatBase

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Title: A LINEAR TYPE EVAPORATOR WITH A MIXING ZONE

Abstract: Source: KR20140071821A The present invention relates to a linear evaporation source including a mixing zone for uniformly mixing evaporation materials and preventing spitting which comprises: a crucible for receiving evaporation materials; an induction pipe

formed to communicate with the crucible; a distribution pipe having a plurality of nozzles or distribution holes

provided on the upper part to communicate with the induction pipe; and a mixing zone provided between the induction pipe and the distribution pipe to mix the plurality of evaporation materials. When co-deposition occurs by ...

Assignee(s):(std): SUNIC SYSTEM LTD

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191) Family number: 56665601 (WO14085886A1) © PatBase

Title: PROCESS FOR PRODUCING MULTILAYER THIN FILMS, MULTILAYER THIN FILMS, ORGANIC PHOTOELECTROCHEMICAL SOLAR CELLS AND USE OF THE ORGANIC PHOTOELECTROCHEMICAL SOLAR CELLS PROCESSO PARA PRODUZIR FILMES FINOS DE MULTICAMADAS, FILMES FINOS DE MULTICAMADAS, CELULAS SOLARES FOTOELETROQUIMICAS ORGANICAS E USO DAS CELULAS SOLARES FOTOELETROQUIMICAS ORGANICAS

Abstract: Source: WO14085886A1 The present invention relates to a process for the production of multilayer thin films that can be deposited as active layers in solar cells. A further object of the present invention is to provide multilayer thin films that are produced by means of said process. Furthermore, the present invention relates to the organic photoelectrochemical solar cells produced by means of the deposition of the multilayer thin films produced by means of said process and to the use of the organic photoelectrochemical solar cells. A presente invencao se refere a um processo para ...

Assignee(s):(std):

ALMEIDA LUIZ CARLOS PIMENTEL ; NOGUEIRA ANA FLAVIA ; UNICAMP ; UNIVERSIDADE ESTADUAL DE CAMPINAS UNICAMP

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192) Family number: 56544579 (US2014145156A) © PatBase

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Title: ORGANIC LIGHT-EMITTING DISPLAY DEVICE AND

METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014145156A An organic light-emitting display device includes a thin film transistor, a first insulating layer, a first electrode a second insulating layer, an organic emission layer, a second electrode, a

first auxiliary layer in a first region on the second electrode and having a first edge, a third electrode in a

second region, on the second electrode and having a second edge contacting the first edge of the first auxiliary layer, and a second auxiliary layer on at least the first region and having a refractive index higher than the first auxiliary ...

Assignee(s):(std): CHOI JUN HO ; CHUNG JIN KOO ; KIM SEONG MIN ; SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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193) Family number: 56586337 (TW201421551A) © PatBase

Title: TAKE OUT METHOD OF FLEXIBLE DEVICE AND SEPARATION METHOD BETWEEN SUBSTRATES

Abstract: Source: TW201421551A A take out method of a flexible device is provided. A first carrier is provided. The first carrier has a first de-bonding area on a first surface thereof, and a first flexible substrate is attached thereto. A second carrier is provided. The second

carrier has a second de-bonding area on a first surface thereof, and a second flexible substrate and at least one flexible device are sequentially attached thereto. The first and second carriers are bonded with the first surface of the first carrier facing the first surface of the second carrier. A take out step is performed to ...

Assignee(s):(std): IND TECH RES INST ; INDUSTRIAL TECHNOLOGY RESEARCH INST

Assignee(s):

TECHNOLOGY RESEARCH INST IND

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194) Family number: 56545825 (US2014147949A) © PatBase

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Title: MASK STRIPS AND METHOD FOR MANUFACTURING

ORGANIC LIGHT EMITTING DIODE DISPLAY USING THE SAME

Abstract: Source: US2014147949A A mask strip for manufacturing an organic light emitting diode (OLED) display is disclosed. In one aspect, the mask strip is extended in a length direction and fixed to a frame. The frame includes a plurality of masking pattern units arranged in a matrix format in which an opening pattern includes a plurality of rows that are substantially parallel to a width direction crossing the length direction and a plurality of columns that are substantially parallel to the length direction. The rows respectively have a curvature which is concave toward an inside of the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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195) Family number: 56590667 (WO14084133A1) © PatBase

Title: METHOD FOR MANUFACTURING SOLAR CELL, AND SOLAR CELL

Abstract:

Source: WO14084133A1 A purpose of the present invention is to provide a method for manufacturing a solar cell, which is capable of producing a porous inorganic oxide layer that contains less impurities and has high porosity even by low-temperature firing. Another purpose of the present invention is to provide a solar cell which is manufactured using the method for manufacturing a solar cell. The present invention is a method for manufacturing a solar cell, which comprises: a step wherein an inorganic oxide paste containing inorganic oxide fine particles, a binder resin and an organic solvent ...

Assignee(s):(std): SEKISUI CHEMICAL CO LTD

Assignee(s): SEKISUI CHEM CO LTD ; SEKISUI CHEMICAL CO

196) Family number: 56646854 (KR20140070774A) © PatBase

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Title: ORGANIC SOLAR CELL AND FABRICATION METHOD THEREOF

Abstract: Source: KR20140070774A An organic solar cell of the present invention includes a substrate which has a plurality of convex units formed on a surface and a plurality of recess units formed in the other surface; and organic solar cell elements with are formed on either or both of the surfaces of the substrate. Accordingly, the present invention can increase the efficiency by widening the specific surface area of the organic solar cell, and implement two organic solar cells on a single substrate by forming the organic solar cell elements on the both surfaces of the substrate and implement ...

Assignee(s):(std): AMOGREENTECH CO LTD

Assignee(s): AMOGREENTECH CO

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197) Family number: 56548570 (WO14081216A1) © PatBase

Title: ORGANIC THIN FILM FORMING APPARATUS, AND ORGANIC THIN FILM FORMING METHOD AND METHOD USING SAME FOR MANUFACTURING ORGANIC THIN FILM DEVICE

Abstract: Source: WO14081216A1 The present invention relates to an organic thin film forming apparatus, and to an organic thin film forming method and to a method using same for manufacturing an organic thin film device. According to the present invention, an organic light-emitting layer (photoactive layer) and/or an electron transport layer can be formed on a substrate when an OLED or an organic solar cell is manufactured. The organic thin film forming apparatus according to the present invention, includes: a spray unit which forms an organic thin film by spraying a solution onto the surface of ...

Assignee(s):(std): AMOGREENTECH CO LTD

Assignee(s):

AMOGREENTECH CO

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198) Family number: 56548921 (WO14082002A2) © PatBase

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Title: USE OF INVERSE QUASI-EPITAXY TO MODIFY ORDER DURING POST-DEPOSITION PROCESSING OR ORGANIC PHOTOVOLTAICS

Abstract: Source: WO14082002A2 Disclosed herein are methods for fabricating an organic photovoltaic device comprising depositing an amorphous organic layer and a crystalline organic layer over a first electrode, wherein the amorphous organic layer and the crystalline organic layer contact one another at an interface; annealing the amorphous organic layer and the crystalline organic layer for a time sufficient to induce at least partial crystallinity in the amorphous organic layer; and depositing a second electrode over the amorphous organic layer and the crystalline organic layer. In the methods ...

Assignee(s):(std): UNIV MICHIGAN

Assignee(s): THE UNIV OF MICHIGAN

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199) Family number: 56490585 (US2014138646A) © PatBase

Title: ORGANIC LIGHT-EMITTING DIODE DISPLAY APPARATUS AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014138646A An organic light-emitting diode (OLED) display apparatus including a substrate, an insulation layer on the substrate, and an align mark formed of an insulation material, wherein an upper surface of the insulation layer contacts a lower surface of the align mark.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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200) Family number: 56549566 (KR20140065272A) © PatBase

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Title: ORGANIC SOLA CELL OF OPTICAL FILAMENT TYPE AND

PREPARING METHOD OFTHERE

Abstract: Source: KR20140065272A The present invention relates to a new type of organic solar cell and, more particularly, to an optical fiber type organic solar cell. An existing organic solar cell is monotonously formed with a film shape or a planar shape, thereby causing an application field and an application product to be limited. The present invention relates to the organic solar cell which increases the application field to clothes, a cable, and others by overcoming the flexibility limit of the organic solar cell by supplying a filament type organic solar cell. Also, the organic solar cell ...

Assignee(s):(std): WOONGJIN CHEMICAL CO LTD

Assignee(s): WOONGJIN CHEMICAL CO

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201) Family number: 56549569 (KR20140065274A) © PatBase

Title: ORGANIC SOLA CELL OF SEA-ISLAND FIBER TYPE AND PREPARING METHOD THEREOF

Abstract: Source: KR20140065274A The present invention relates to a new form of an organic solar cell and, more specifically, to a sea-island fiber type organic solar cell. A conventional organic solar cell is typically in a thin-film form or a film form, so it was limited to apply to clothing. The present invention relates to an organic solar cell which has overcome flexibility limitations of the conventional organic solar cell by providing the sea-island fiber type organic solar cell. ...

Assignee(s):(std): WOONGJIN CHEMICAL CO LTD

Assignee(s):

WOONGJIN CHEMICAL CO

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202) Family number: 56550068 (KR101400902B) © PatBase

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Title: ORGANIC SOLAR CELL AND MANUFACTURING METHOD OF THE SAME

Abstract: Source: KR101400902B The present invention relates to an organic solar cell and a manufacturing method of the same, and more specifically, to: a solar cell which includes a quantum dot in which organic ligand with thiophene is substituted, an electron donor, and an electron carrier in a photoactive layer of an organic solar cell; and a manufacturing method of the same. The present invention provides the organic solar cell which comprises: a first electrode including a substrate, and a transparent conductive layer located on the substrate; a hole injection layer located on the first ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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203) Family number: 56490575 (US2014138629A) © PatBase

Title: OPTOELECTRONIC DEVICE FORMED WITH CONTROLLED VAPOR FLOW

Abstract: Source: US2014138629A An organic optoelectronic device (OED) includes a plurality of OED cells separated by a vapor flow barrier that extends away from a substrate surface. The vapor flow barrier partially defines an OED cell area and helps prevent stray

organic material deflected away from the substrate surface during deposition from being deposited outside the cell area. An organic vapor jet (OVJ) print head can be used to deposit organic material along the vapor flow barrier and may include one or more features configured to capture some of the stray organic

material. A method that ...

Assignee(s):(std): OF MICHIGAN THE UNIV ; UNIV MICHIGAN ; UNIV OF MICHIGAN

Assignee(s): REGENTS OF UNIV OF MICHIGAN THE ; THE REGENTS OF THE UNIVERSITY OF MICHIGAN ; THE UNIV OF MICHIGAN

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204) Family number: 56490297 (US2014137929A) © PatBase

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Title: ORGANIC SOLAR CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: US2014137929A A solar cell includes an active layer between a first electrode and a second electrode, and a transport layer between the active layer and one of the first or second electrodes. A plurality of nanoparticles are included in at least one of the active layer or the transport layer. The nanoparticles may have the same or different shapes or sizes and may be spaced differently based on location. The nanoparticles may be made of metal or a different material and the active layer may be made from an organic photovoltaic material. ...

Assignee(s):(std): SAMSUNG ELECTRONICS CO LTD

Assignee(s): SAMSUNG ELECTRONICS CO

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205) Family number: 56548852 (US2014186620A) © PatBase

Title: FABRICATION AND PASSIVATION OF SILICON SURFACES

Abstract: Source: US2014186620A Embodiments described herein are related to methods for processing substrates such as silicon substrates. In some cases, the method may provide the ability to passivate a silicon surface at relatively low temperatures and/or in the absence of a solvent. Methods described herein may be useful in the fabrication of a wide range of devices, including electronic devices such as photovoltaic devices, solar cells, organic light-emitting diodes, sensors, and the like. ...

Assignee(s):(std): BUONASSISI TONIO ; GLEASON KAREN K ; JAYAN BABY REEJA ; MASSACHUSETTS INST TECHNOLOGY ; SEGAL YARON ; YANG RONG

Assignee(s): MASSACHUSETTS INST OF TECHNOLOGY

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206) Family number: 56550012 (KR20140065670A) © PatBase

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Title: ORGANIC PHOTOVOLTAIC CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20140065670A The present application relates to an organic solar cell and a manufacturing method thereof. The organic solar cell includes: a cathode; an anode which faces the cathode; a photoactive layer which is arranged between the cathode and the anode; and a cathode buffering layer which is arranged between the photoactive layer and the cathode. The cathode buffering layer includes an ionic organic material. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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207) Family number: 56644239 (KR20140068288A) © PatBase

Title: ORGANIC PHOTOVOLTAIC CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20140068288A The present specification relates to an organic solar cell and a manufacturing method thereof. The organic solar cell includes: an anode; a cathode facing the anode; a photoactive layer which is arranged between the anode and cathode; a cathode buffer layer which is arranged between the cathode and the photoactive layer; and an anode buffer layer which is arranged between the photoactive layer and the anode. The anode buffer layer includes an ionic organic substance. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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208) Family number: 55392847 (US2014138634A) © PatBase

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Title: ORGANIC LIGHT-EMITTING DISPLAY SYSTEM AND

METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014138634A An organic light-emitting display system and a method of manufacturing the same are disclosed. In one aspect, the organic light-emitting display system includes a substrate, a display

unit that defines an active area on the substrate and includes a plurality of thin film transistor (TFTs), and an

encapsulation layer that seals the display unit and has a stacked structure in which at least a first inorganic film, a first organic film, and a second inorganic film are sequentially stacked. The TFTs includes an active layer, a gate electrode, a source electrode, a drain ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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209) Family number: 56490590 (US2014138651A) © PatBase

Title: ORGANIC LIGHT-EMITTING DIODE DISPLAY PANEL AND METHOD FOR FABRICATING THE SAME

Abstract: Source: US2014138651A Disclosed is an organic light-emitting diode (OLED) display panel. An OLED display panel comprises a plurality of signal lines and a thin film transistor formed on a substrate, an interlayer insulating layer, a first electrode, a bank, an organic light-emitting layer, a second electrode, a first passivation layer, an organic layer, a second passivation layer and a barrier film, wherein the bank is formed to completely cover the interlayer insulating layer, and an inclination formed by side surfaces of the bank and the interlayer insulating layer is made to be ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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210) Family number: 55892924 (WO14076276A1) © PatBase

Page 353: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: METHOD FOR PRODUCING A LAYER ON A SURFACE

AREA OF AN ELECTRONIC COMPONENT VERFAHREN ZUR HERSTELLUNG EINER SCHICHT AUF EINEM OBERFLAECHENBEREICH EINES ELEKTRONISCHEN BAUELEMENTS

Abstract: Source: WO14076276A1 The invention relates to a

method for producing at least one layer (1) on a surface area (2) of an optoelectronic component (100,

101, 102, 103, 104, 105) comprising a functional layer sequence (41) with an active area which is suitable to produce or to detect the light when the optoelectronic component is in operation. Said method consists of the following steps: introducing the surface area (2) into a coating chamber (10); depositing the at least one layer (1) according to a flash-light supported atomic layer deposition method in which the surface area (2) is exposed ...

Assignee(s):(std):

OSRAM OPTO SEMICONDUCTORS GMBH

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211) Family number: 56491692 (US2014141547A) © PatBase

Title: METHOD OF MANUFACTURING FLEXIBLE DISPLAY APPARATUS

Abstract: Source: US2014141547A A method of manufacturing a flexible display apparatus, the method including forming a thin film transistor (TFT), a first electrode, and a pixel defining film on a flexible substrate by using a roll-to-roll device; separating the flexible substrate from the roll-to-roll device; attaching the flexible substrate to a support substrate; forming an organic light-emitting diode (OLED) and an encapsulating layer at the first electrode; and separating the flexible substrate from the support substrate. ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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212) Family number: 55129014 (KR101327251B) © PatBase

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Title: ROTATABLE A CHAMBER DOOR

Abstract: Source: KR101327251B The present invention relates to a rotatable chamber door which comprises: a clamp that is disposed on both ends of a chamber door across a crystal sensor guide tube connected to one side of a distributor of an organic substance disposition

chamber; multiple shafts having clamps disposed on the inside of both sides of the organic substance

disposition chamber to open and close, and reciprocating for opening/closing the chamber door; a hinge connecting the clamps disposed on the chamber door and on the shafts; at least one stopper pin connecting the clamps disposed on ...

Assignee(s):(std): SUNIC SYSTEM LTD

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213) Family number: 56542249 (KR20140062982A) © PatBase

Title: DEPOSITION MATERIAL SENSING GUIDE TUBE EQUIPPED WITH A COOLING EQUIPMENT

Abstract: Source: KR20140062982A The present invention relates to a deposition material sensing guide tube equipped with a cooling apparatus comprising: a deposition thickness detecting sensor having quartz crystal for measuring the mass and thickness of a

deposited film deposited on a deposition substrate; a guide tube for inducing an evaporated material evaporated from a source of an organic material to the quartz crystal; and a cooling apparatus installed in the outer circumference of the guide tube to cool the guide tube with cooling water. According to the present

invention, the deposition ...

Assignee(s):(std): SUNIC SYSTEM LTD

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214) Family number: 56438501 (US2014134913A) © PatBase

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Title: METHOD OF FABRICATING FLEXIBLE DISPLAY DEVICE

Abstract: Source: US2014134913A A method of fabricating a flexible display device is to prevent damage due to a defective detachment of an auxiliary substrate by carrying out the detachment in a manner of irradiating lasers onto a sacrifice layer interposed between a

flexible substrate and an auxiliary substrate and thereafter taking away a vacuum by injecting air into

the interface between the flexible substrate and the auxiliary substrate. The fabricating method includes providing an auxiliary substrate, forming a sacrifice layer on the auxiliary substrate, forming a flexible substrate on the ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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215) Family number: 56426563 (DE102012022268B4) © PatBase

Title: VERFAHREN ZUR HERSTELLUNG EINES KOLBENRINGS SOWIE DANACH HERGESTELLTER KOLBENRING

Abstract: Source: DE102012022268B4 Verfahren zur Herstellung eines, eine Laufflaeche (2), eine innere Umfangsflaeche (3) sowie dazwischen sich erstreckende Flankenflaechen (4, 5) aufweisenden, Kolbenrings (1), indem ein metallischer Grundkoerper zumindest im

Bereich seiner Laufflaeche (2) mit mindestens einer Hartstoffschicht (6), insbesondere einer PVD-, CVD- oder DLC-Schicht, versehen wird und in diese Hartstoffschicht (6), in Umfangsrichtung gesehen, zumindest partiell kanalartig sich zwischen den Flankenflaechen (4, 5) erstreckende Unterbrechungen

(7, 8) eingebracht werden, wobei die eine ...

Assignee(s):(std): FEDERAL MOGUL BURSCHEID GMBH

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216) Family number: 56436928 (US2014130734A) © PatBase

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Title: DEVICE FOR DEPOSITING ORGANIC MATERIAL

Abstract: Source: US2014130734A A deposition device for depositing an organic material includes a supporting roll having a surface, the surface being configured to receive a flexible substrate thereon, the supporting roll being configured to rotate, a deposition source spaced

apart from the supporting roll, the deposition source being configured to deposit the organic material on the

flexible substrate on the supporting roll, and a mask positioned between the supporting roll and the deposition source, the mask including an opening configured to allow the organic material to pass from the deposition ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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217) Family number: 56424589 (KR101393608B) © PatBase

Title: ENVIRONMENTALLY-FRIENDLY ORGANIC SOLAR CELL AND ITS PREPARATION METHOD

Abstract: Source: KR101393608B The present invention relates to a monomolecular photoactive nanostructure for an environmentally-friendly organic solar cell and a manufacturing method thereof, capable of preventing non-uniformity due to the synthesis arrangement of macromolecular materials and environmentally-friendly manufacturing the organic solar cell in comparison with an existing method using a toxic solvent like benzene. ...

Assignee(s):(std): DAEGU GYEONGBUK INST SCIENCE

Assignee(s): DAEGU GYEONGBUK INSTITUTE OF SCIENCE AND TECHNOLOGY ; DAEGU GYEONGBUK INST OF SCIENCE AND TECHNOLOGY

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218) Family number: 56437300 (US2014131667A) © PatBase

Page 365: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC LAYER DEPOSITION APPARATUS, METHOD OF

MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY APPARATUS BY USING THE SAME, AND ORGANIC LIGHT-EMITTING DISPLAY APPARATUS MANUFACTURED BY THE METHOD

Abstract: Source: US2014131667A An organic layer deposition

apparatus, a method of manufacturing an organic light-emitting display apparatus by using the same, and an

organic light-emitting display apparatus manufactured by the method, and more particularly, an organic layer deposition apparatus that is suitable for use in the mass production of a large substrate, that enables high-definition patterning, and that is capable of controlling a distance between a patterning slit sheet and a substrate that moves, a method of manufacturing an organic light-emitting display apparatus by using the organic ...

Assignee(s):(std):

SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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219) Family number: 56430187 (WO14072016A1) © PatBase

Title: METHOD FOR PRODUCING ORGANIC ELECTRONIC DEVICES WITH BANK STRUCTURES, BANK STRUCTURES AND ELECTRONIC DEVICES PRODUCED THEREWITH

Abstract: Source: WO14072016A1 The present invention relates to a process for producing an organic electronic device, wherein a layer is selectively swelled with a swelling solvent so as to form bank structures (8a, 8b) allowing the deposition of the semiconductor material (7) in a specific and well-defined area. The present invention further relates to bank structures, organic electronic devices and products or assemblies produced by said process. ...

Assignee(s):(std): MERCK PATENT GMBH

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220) Family number: 56427813 (WO14072944A1) © PatBase

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Title: NOVEL METHOD FOR MANUFACTURING ORGANIC ELECTRONIC DEVICES

Abstract: Source: WO14072944A1 The present invention relates to a method for manufacturing organic electronic devices including a dipyrannylidene film as an anodic interface layer, said method being carried out in a vacuum and without any exposure to air. The invention also relates to organic devices resulting from said method, more specifically to organic solar cells (OSC). ...

Assignee(s):(std): CENTRE NAT RECH SCIENT

Assignee(s): CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE

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221) Family number: 56425165 (WO14074028A8) © PatBase

Title: POLYMERS AND THEIR USE IN PHOTOVOLTAIC DEVICES

Abstract: Source: WO14074028A8 The present invention relates to polymers and a photovoltaic conversion device using the same having the general formula (I): wherein n is the number of repeating units, R1, R2, R3 and R4 are the same or mutually different and represent a

hydrogen atom, a halogen atom, an alkyl group, an alkoxy group, an alkylthio group, a cyano group or a nitro group, while R5, R6 are the same or mutually different and represent a C1-C20alkyl group and X represents formula (II) wherein Y=N-R7 or CR8R9 or SiR8R9, and R7, R8, R9 represent in each case a C1-

C20alkyl group, EG-1 and EG-2 ...

Assignee(s):(std): INST OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES ; INST OF

PROBLEMS OF CHEMICAL PHYSICS RAS ; LANXESS

DEUTSCHLAND GMBH

Assignee(s): OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES INST ; OF PROBLEMS OF CHEMICAL PHYSICS RAS INST

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222) Family number: 56425163 (WO14074027A8) © PatBase

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Title: POLYMERS AND THEIR USE IN PHOTOVOLTAIC

DEVICES

Abstract: Source: WO14074027A8 The present invention provides polymers comprising repeating units represented by the formula (I): wherein n is the number of repeating units, R1, R2, R3, R4 are the same

or mutually different and represent a hydrogen atom, a halogen atom, an alkoxy group, an alkylthio group, an

aryl group, an aryloxy group, an arylthio group, an arylalkyl group, an arylalkoxy group, an arylalkylthio group, an arylalkenyl group, an arylalkynyl group, a mono-valent heterocyclic group, a heterocyclic thio group, an amino group, a substituted amino group, a silyl group, a substituted silyl ...

Assignee(s):(std): INST OF PROBLEMS OF CHEMICAL PHISICS RAS ; INST OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES ; INST OF PROBLEMS OF

CHEMICAL PHYSICS RAS ; LANXESS DEUTSCHLAND GMBH

Assignee(s): OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES INST ; OF PROBLEMS OF CHEMICAL PHISICS RAS INST ; OF PROBLEMS OF CHEMICAL PHYSICS RAS INST

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223) Family number: 56429178 (WO14071518A1) © PatBase

Title: METHOD FOR DEPOSITING A CONDUCTIVE COATING ON A SURFACE

Abstract: Source: WO14071518A1 A method for depositing a conductive coating on a surface is provided, the method including treating the surface by depositing fullerene on the surface to produce a treated surface and depositing the conductive coating on the treated surface. The

conductive coating generally includes magnesium. A product and an organic optoelectronic device produced according to the method are also provided.

Assignee(s):(std): OTI LUMIONICS INC

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224) Family number: 56434522 (WO14072873A1) © PatBase

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Title: BI-POLAR ORGANIC SEMICONDUCTORS FOR

THERMOELECTRIC POWER GENERATION

Abstract: Source: WO14072873A1 Disclosed are bi-polar semiconductor composites that include at least one organic p-type semiconductor; and at least one organic n-type semiconductor, and methods of making and

using them. In particular, collagen based semiconductors may be used. The composite may be

used to generate electricity from heat loss via industrial processes, such as heat lost via pipes, heat sinks, and so on.

Assignee(s):(std):

EMPIRE TECHNOLOGY DEV LLC

Assignee(s): EMPIRE TECHNOLOGY DEVELOPMENT LLC

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225) Family number: 56435487 (WO14073284A1) © PatBase

Title: ORGANIC EL ELEMENT

Abstract:

Source: WO14073284A1 The present invention makes it possible to reduce luminance unevenness by reducing electrical resistance of an electrode layer as much as possible, and applying a sufficient voltage to a light emitting region. This organic EL element is provided with: a rectangular insulating base material; a lower

electrode layer laminated on the base material; an organic EL layer laminated on the lower electrode layer; and an upper electrode layer laminated on the organic EL layer. An auxiliary electrode layer formed of a metal is connected to the upper electrode layer and/or the lower ...

Assignee(s):(std): NITTO DENKO CORP

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226) Family number: 56396550 (US2014127837A) © PatBase

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Title: THIN FILM DEPOSITION APPARATUS AND METHOD OF

DEPOSITING THIN FILM USING THE SAME

Abstract: Source: US2014127837A A thin film deposition apparatus and a method of depositing a thin film using the thin film deposition apparatus, the thin film deposition apparatus including a chamber having a

substrate and a mask mounted therein; a deposition source, the deposition source supplying a deposition

gas to the substrate; and a mask measuring unit, the mask measuring unit measuring a status of the mask within the chamber.

Assignee(s):(std):

HAN JEONG WON ; SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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227) Family number: 56424280 (KR20140057757A) © PatBase

Title: DEPOSITING SOURCE APPARATUS OF ORGANIC THIN FILM WITH DOUBLE COOLING SHIELD

Abstract: Source: KR20140057757A The present invention relates to an organic film deposition source apparatus with a cooling shield and, more specifically, to an organic film deposition source apparatus for forming an organic film by depositing a deposition source on a

substrate placed to face an opening of a crucible, which comprises a heating unit having a heater block in which a heater coil is installed; a crucible discharging a deposition source through an opening when heated by the heating unit; and a dual cooling shield which is coupled to the outer part of the heating part on outer

side of the ...

Assignee(s):(std): SUNIC SYSTEM LTD

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228) Family number: 56392990 (US2014124750A) © PatBase

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Title: DEVICE AND METHOD FOR IMPROVING AMOLED

DRIVING

Abstract: Source: US2014124750A Devices and methods for increasing the aperture ratio and providing more precise gray level control to pixels in an active matrix organic light emitting diode (AMOLED) display are

provided. By way of example, one embodiment includes disposing a gate insulator between a gate of a driving

thin-film transistor and a gate of a circuit thin-film transistor. The improved structure of the display facilitates a higher voltage range for controlling the gray level of the pixels, and may increase the aperture ratio of the pixels.

Assignee(s):(std): APPLE INC

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229) Family number: 56400422 (KR20140056882A) © PatBase

Title: CHAMBER FOR DEPOSITION THE THIN FILM

Abstract:

Source: KR20140056882A Disclosed is a thin film deposition chamber which can prevent a bottleneck phenomenon while a deposition object is coming out of a through-hole of a body of a supply device. The disclosed thin film deposition chamber has multiple through-holes having an accepting space to widen

towards the bottom, thereby preventing a bottleneck phenomenon while a deposition object is coming out of the through-holes.

Assignee(s):(std): WONIK IPS CO LTD

Assignee(s): WONIK IPS CO

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230) Family number: 56387740 (DE102012021691A1) © PatBase

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Title: VERFAHREN ZUR HERSTELLUNG VON ORGANISCHEN LEUCHTDIODEN ODER ORGANISCHEN PHOTOVOLTAISCHEN ELEMENTEN METHOD FOR MANUFACTURING ORGANIC LEDS OR ORGANIC PHOTOVOLTAIC ELEMENTS, INVOLVES REMOVING MATERIAL OF ORGANIC MULTILAYER STRUCTURE IN RADIATED REGION SO THAT ELECTRICALLY CONDUCTIVE CONNECTION TO SUBSTRATE OR LAYER IS PRODUCED AS ELECTRODE

Abstract: Source: DE102012021691A1 Die Erfindung betrifft ein Verfahren zur Herstellung von organischen Leuchtdioden oder organischen photovoltaischen Elementen, bei dem nebeneinander angeordnete organische Leuchtdioden oder organische photovoltaische Elemente elektrisch in Reihe geschaltet werden. Dabei wird auf ein elektrisch leitfaehiges Substrat oder eine auf einer Substratoberflaeche ausgebildete elektrisch leitende Schicht, die untere Elektroden bildet, zwischen einzelne organische Leuchtdioden oder photovoltaische Elemente Strukturelemente aus einem dielektrischen Werkstoff, die sich ueber ...

Assignee(s):(std):

FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E V ; NOVALED GMBH

Assignee(s):

FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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231) Family number: 56399482 (KR20140055721A) © PatBase

Title: EVAPORATION SOURCE AND APPARATUS FOR DEPOSITION HAVING THE SAME

Abstract: Source: KR20140055721A Disclosed are an evaporation source and a depositing apparatus including the same. The evaporation source jets an evaporated organic matter so that the evaporated organic matter is deposited on a substrate. The evaporation source

comprises: an outer diffuser; an inner diffuser arranged inside the outer diffuser in the lengthwise direction; an outer transfer tube having one end communicated with the outer diffuser; an inner transfer tube having one end communicated with the inner diffuser by passing through the outer diffuser; a nozzle unit which includes

an outer ...

Assignee(s):(std): SUNIC SYSTEM LTD

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232) Family number: 56341021 (US2014117322A) © PatBase

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Title: ORGANIC LIGHT EMITTING DISPLAY PANEL AND

METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014117322A An organic light emitting display panel includes a light emitting diode array substrate and an encapsulation substrate adhered to the light emitting array diode substrate by an adhesive film. The light emitting array diode substrate includes a driving thin film transistor formed on a substrate, an organic light emitting diode including a first electrode connected to the driving thin film transistor, an organic emission layer formed on the first electrode, and a second electrode formed on the organic emission layer, and first and second passivation layers formed on ...

Assignee(s):(std): LG DASPLAY CO LTD ; LG DISPLAY CO LTD

Assignee(s): LG DASPLAY CO ; LG DISPLAY CO

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233) Family number: 56399114 (KR20140055224A) © PatBase

Title: EVAPORATION MATERIAL FEEDING METHOD AND APPARATUS

Abstract: Source: KR20140055224A A method for feeding an evaporation material for improving the stability of a crucible and an apparatus thereof are provided. The method for feeding an evaporation material for improving the stability of a crucible according to an

embodiment of the present invention includes a source temperature maintenance step for maintaining the temperature of a source in a temperature range higher than the melting point of an evaporation material which is prepared for deposition of a substrate; and an evaporation material feeding step for feeding the

evaporation material from an ...

Assignee(s):(std): SFA ENGINEERING CORP

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234) Family number: 56399118 (KR20140055225A) © PatBase

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Title: EVAPORATION MATERIAL FEEDING APPARATUS AND

EVAPORATION SYSTEM HAVING THE SAME

Abstract: Source: KR20140055225A Disclosed are an evaporation material feeding apparatus and an evaporation system of a flat panel display device having the same. The evaporation material feeding apparatus according to an

embodiment of the present invention includes: a sub-chamber for feeding an evaporation material coupled to

one side of a vacuum chamber wherein a source is prepared, for inserting the evaporation material to be fed to the source; a vacuum adjusting unit connected to the sub-chamber for feeding an evaporation material to adjust the inside of the sub-chamber for feeding the evaporation ...

Assignee(s):(std): SFA ENGINEERING CORP

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235) Family number: 56399590 (KR20140055876A) © PatBase

Title: A PREPARATION METHOD OF A DEVICE COMPRISING A CHARGE GENERATION LAYER WITH A MICRO-PATTERN

Abstract: Source: KR20140055876A The present invention relates to a method to manufacture a device comprising a charge generating layer of a micro-pattern and, more specifically, to a method to manufacture an organic device more conveniently and easily, comprising a

charge generation layer having a higher transmittance and conductivity than the formation of a metal thin film using a conventional thermal deposition by applying an easier fine pattern formation process to a manufacturing process of an intermediate electrode layer of a stacked organic device; i.e., the charge

generating ...

Assignee(s):(std): UNIV DANKOOK IACF

Assignee(s):

ACADEMIC COOPERATION FOUNDATION DANKOOKUNIVERSITY IND ; INDUSTRY ACADEMIC COOPERATION FOUNDATION DANKOOK UNIVERSITY

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236) Family number: 56399037 (KR20140055193A) © PatBase

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Title: NOZZLE SHIELD TO MINIMIZE THE THERMAL

DEFORMATION

Abstract: Source: KR20140055193A The present invention relates to a nozzle shield for minimizing thermal strain, capable of preventing a nozzle from being clogged with particles attached to an edge of a bore hole due to

thermal strain and minimizing the attachment of particles of a volatile material to an evaporation source.

In a conventional nozzle, an opening of a nozzle is blocked by particles of a volatile material, so the volatile material is not evenly deposited on a glass. The conventional nozzle consumes unnecessary time to release a deposition chamber from a vacuum, remove particles from ...

Assignee(s):(std): SUNIC SYSTEM LTD

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237) Family number: 56392067 (WO14067233A1) © PatBase

Title: PREPARATION METHOD FOR HIGH-CONDUCTIVITY ORGANIC TRANSPARENT CONDUCTIVE FILM

Abstract: Source: WO14067233A1 Provided is a preparation method for a high-conductivity organic transparent conductive film.An organic micromolecular or polymer semiconductor material is used as a dielectric layer (200, 400) to prepare a transparent conductive film of

a dielectric/metal/dielectric multilayer structure, so that the light transmittance of a visible region and an ultra-low area of resistance of less than 10 O/? can be achieved, the selection of the dielectric material in the dielectric/metal/dielectric multilayer structure being greatly extended, and a large number of n-type and ...

Assignee(s):(std): CHANGCHUN INST OF OPTICS AND FINE MECHANICS AND PHYSICS CHINESE ACADEMY OF SCIENCES ; CHANGCHUN OPTICS FINE MECH

Assignee(s): CHANGCHUN INST OF OPTICS FINE MECHANICS AND PHYSICS CHINESE ACADEMY OF SCIENCE ; CHANGCHUN INST OF OPTICS FINE MECHANICS ANDPHYSICS CHINESE ACADEMY OF SCIENCE ; CHANGCHUN INST OF OPTICS FINE MECHANICS ANDPHYSICS CHINESE ACADEMY OF SCIENCES

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238) Family number: 56400144 (KR20140056639A) © PatBase

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Title: ORGANIC SOLAR CELL INCLUDING PHOSPHORS AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR20140056639A An organic solar cell containing phosphors and a method for manufacturing the same are provided. The organic solar cell, while including a first electrode, a second electrode facing the first electrode, and an organic photoactive layer interposed between the first electrode and the second electrode, can increase photocurrent density of a solar cell after absorbing sunlight with a specific wavelength band which has not been absorbed at an entire area top to bottom of a battery by containing phosphors between the first electrode and the organic photoactive layer or ...

Assignee(s):(std): UNIV NAT CHONNAM IND FOUND

Assignee(s): FOUNDATION OF CHONNAM NATIONAL UNIV IND ; INDUSTRY FOUNDATION OF CHONNAM NATIONAL UNIVERSITY

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239) Family number: 56396116 (KR20140053541A) © PatBase

Title: CRUCIBLE WITH PLATE FOR PREVENTING SPITTING

Abstract: Source: KR20140053541A The present invention relates to a crucible for preventing spitting to uniformly deposit a source material on a substrate in a semiconductor or OLED deposition process. The crucible with a spitting prevention unit according to the present invention comprises: an upper crucible having an opening and a flange formed thereon; a lower crucible having a step formed to couple the upper crucible with a plate; and the plate having a plurality of source outlets formed on the edge thereof and mounted between the upper crucible and the lower crucible. According to the ...

Assignee(s):(std): SUNIC SYSTEM LTD

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240) Family number: 56337002 (US2014116337A) © PatBase

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Title: APPARATUS OF DEPOSITING ORGANIC MATERIAL

Abstract: Source: US2014116337A In an aspect, an organic material deposition apparatus including a process chamber, a first transfer rail, a second transfer rail, at least one mask assembly, at least one substrate assembly, and at least one deposition source unit is

provided. The first and second transfer rails may be located in the process chamber, and the second

transfer rail may be located on and spaced apart from the first transfer rail.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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241) Family number: 56260770 (US2014110680A) © PatBase

Title: ORGANIC LIGHT-EMITTING DISPLAY APPARATUS AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014110680A An organic light-emitting display apparatus includes: a substrate; a plurality of thin film transistors on the substrate, each of the thin film transistors including an active layer, a gate electrode, and source and drain electrodes; first electrodes electrically connected to the plurality of thin film transistors, respectively, and being on respective pixels corresponding to the plurality of thin film transistors; organic layers on the first electrodes, respectively, and including light-emitting layers; auxiliary electrodes each of which is on at least a portion ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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242) Family number: 56266566 (WO14061857A1) © PatBase

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Title: EFFECTIVE P-TYPE DOPANT AND RHENIUM OXIDE FOR OVERCOMING S-TYPE CURRENT-VOLTAGE GRAPH IN ORGANIC PHOTOVOLTAIC CELL USING ELECTRON DONOR WITH LOW HIGHEST OCCUPIED MOLECULAR ORBITAL ENERGY LEVEL

Abstract: Source: WO14061857A1 Provided are a first electrode, a first hole transport layer that is formed on the first electrode and has a p-type dopant contained in a first hole transport material, a second hole transport layer that is formed on the first hole transport layer, a photoactive layer that is formed on the second hole transport layer and has a donor layer and an acceptor layer, and an organic photovoltaic cell that has a second electrode which is formed on the photoactive layer, in which the highest occupied molecular orbital energy level of the donor layer is -5.6 eV or less, the ...

Assignee(s):(std): SNU R AND DB FOUNDATION

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243) Family number: 56299856 (KR20140049804A) © PatBase

Title: INVERTED ORGANIC SOLAR CELL AND MANUFACTURING METHOD THEREOF

Abstract: Source: KR20140049804A The present invention relates to an inverted organic solar cell and a method for manufacturing the same and, more specifically, to an inverted organic solar cell and a method for manufacturing the same which: can easily apply a mass production system since a large area can be obtained by allowing the formation of a film deposition via a sputtering process of an electron-absorbing layer, which is a buffer layer of the inverted organic solar cell, with a cathode transparent electrode layer; can have simple and small scaled manufacturing facilities since a slot die ...

Assignee(s):(std):

UNIV KYUNG HEE UNIV IND COOP

Assignee(s): UNIVERSITY INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITY ; IND COOPERATION GROUP OF KYUNG HEE UNIV

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244) Family number: 56251676 (US2014103317A) © PatBase

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Title: THIN FILM TRANSISTOR ARRAY PANEL AND ORGANIC

LIGHT EMITTING DIODE DISPLAY INCLUDING THE SAME

Abstract: Source: US2014103317A A thin film transistor substrate according to an exemplary embodiment includes: a substrate; a gate electrode disposed on the

substrate; a gate insulating layer disposed on the gate electrode; an oxide semiconductor disposed on the gate

insulating layer; a first interlayer insulating layer disposed on the oxide semiconductor; a data line disposed on the first interlayer insulating layer; a second interlayer insulating layer disposed on the data line; a source electrode disposed on the second interlayer insulating layer and connected with the oxide semiconductor and the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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245) Family number: 52915027 (US2014147964A) © PatBase

Title: SHADOW MASK, EVAPORATION DEVICE AND METHOD FOR MANUFACTURING OLED DISPLAY PANEL

Abstract: Source: US2014147964A The present invention provides a shadow mask, an evaporation device and a related method for manufacturing OLED display panel. The shadow mask has an array of multiple openings. Each opening contains a rectangular first section and a number of second sections at the first section's four corners; and each second section is connected to the first section. By varying the design of the shadow mask, the present invention is able to reduce the ineffective area sizes of the openings, thereby enhancing the aperture ratio of the OLED display panel. ...

Assignee(s):(std):

SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN HUAXING OPTOELECT TEC

Assignee(s): SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS

TECHNOLOGY CO ; SHENZHEN CHINA STAR

OPTOELECTRONICS TECHNOLOGY CO LTD

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246) Family number: 56266268 (WO14061532A1) © PatBase

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Title: APPARATUS FOR DEPOSITING ORGANIC MATERIAL

Abstract: Source: WO14061532A1 Provided is an apparatus for depositing an organic material on a substrate in a vacuum environment. The deposition apparatus has: an evaporation chamber for heating and evaporating the organic material, the evaporation chamber being filled

with the organic material; and a guide part for guiding to the substrate the organic material in the form of

steam generated in the evaporation chamber. The evaporation chamber is continually maintained at a lower temperature than the guide part.

Assignee(s):(std):

FUJIFILM CORP

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247) Family number: 56246689 (WO14060912A1) © PatBase

Title: METHOD FOR IMPRINTING OPTO-ELECTRONIC COMPONENTS WITH BUS BARS VERFAHREN ZUM BEDRUCKEN OPTOELEKTRONISCHER BAUELEMENTE MIT BUSBARS

Abstract: Source: WO14060912A1 The invention relates to a method for imprinting optoelectronic components with at least one bus bar (1), the bus bar following the

shape of the optoelectronic component and allowing a homogeneous color impression on the rear face of the component. Die Erfindung betrifft ein Verfahren zum Bedrucken optoelektronischer Bauelemente mit zumindest einem

Busbar (1), wobei der Busbar der Formgebung des optoelektronischen Bauelements folgt und einen homogenen Farbeindruck auf der Rueckseite des Bauelements ermoeglicht.

Assignee(s):(std):

HELIATEK GMBH

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248) Family number: 56252644 (US2014104508A) © PatBase

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Title: LIQUID CRYSTAL DISPLAY DEVICE AND TOUCH PANEL

Abstract: Source: US2014104508A To provide a highly reliable liquid crystal display device including flexible substrates and a crystalline oxide semiconductor film for a backplane. The device includes a flexible first substrate, a flexible second substrate facing the first substrate, and a liquid crystal layer sealed between the substrates with a sealing member. The first substrate is provided with a layer including a transistor, an organic resin film over the transistor, a pixel electrode and a common electrode over the organic resin film, which partly overlap with each other with an insulating ...

Assignee(s):(std): SEMICONDUCTOR ENERGY LAB ; SEMICONDUCTOR ENERGY LABORATORY

Assignee(s): SEMICONDUCTOR ENERGY LABORATORY CO ; SEMICONDUCTOR ENERGY LABORATORY CO LTD ; SEMICONDUCTOR ENERGY LAB CO LTD

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249) Family number: 56204100 (US2014106482A) © PatBase

Title: DEPOSITING APPARATUS AND METHOD FOR MANUFACTURING ORGANIC LIGHT EMITTING DIODE DISPLAY USING THE SAME

Abstract: Source: US2014106482A A deposition apparatus includes a deposition source containing a deposition material, the deposition source including a center area between two outer areas along a first direction, and a

plurality of spray nozzles arranged on the center area of the deposition source along the first direction, the plurality of spray nozzles being configured to spray the deposition material toward a surface substrate, wherein the spray nozzles include first and second spray nozzles, the first spray nozzles having terminal ends

thereof parallel to and facing the surface of the substrate, ...

Assignee(s):(std): LEE SANG SHIN ; SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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250) Family number: 55933244 (US2014106491A) © PatBase

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Title: METHOD OF FABRICATING PATTERNED SUBSTRATE

Abstract: Source: US2014106491A A method of fabricating a patterned substrate, with which the optical performance of a photovoltaic cell including an organic solar cell and an organic light-emitting diode (OLED) can be improved. The method includes generating electrostatic force on a surface of a substrate by treating the substrate with electrolytes, causing nano-particles to be adsorbed on the surface of the substrate, etching the surface of the substrate using the nano-particles as an etching mask, and removing the nano-particles residing on the surface of the substrate. ...

Assignee(s):(std): SAMSUNG CORNING PREC MAT CO

Assignee(s): SAMSUNG CORNING PRECISION MATERIALS CO ; SAMSUNG CORNING PRECISION MATERIALS CO LTD ; CORNING PRECISION MATERIALS CO LTD

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251) Family number: 56195173 (US2014099740A) © PatBase

Title: DEPOSITING APPARATUS AND METHOD FOR MANUFACTURING ORGANIC LIGHT EMITTING DIODE DISPLAY USING THE SAME

Abstract: Source: US2014099740A A deposition apparatus includes a deposition source that receives a deposition material, and a plurality of spray nozzles arranged in a first direction at one side of the deposition source to

spray the deposition material to a facing substrate. The deposition source includes a center area and outer areas, the outer areas being at respective ends of the center area with reference to the first direction. The spray nozzles include first spray nozzles arranged in each outer area and extending outwardly from the

deposition source, a surface forming an end of the first spray ...

Assignee(s):(std): LEE SANG SHIN ; SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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252) Family number: 56203793 (TW201414538A) © PatBase

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Title: Method for Manufacturing An One-dimensional

Nanostructured TiO2 Array

Abstract: Source: TW201414538A The present invention relates to a method for manufacturing an one-dimensional nanostructured TiO2 array that includes: (A) providing a substrate; (B) providing a titanium precursor solution

comprising an acid and a titanium precursor; and (C) disposing the substrate in the titanium precursor

solution and carrying out a reaction under 1 atm, so that the one-dimensional nanostructured TiO2 array is formed on the surface of the substrate.

Assignee(s):(std):

NATIONAL TAIWAN UNIV ; UNIV NAT TAIWAN

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253) Family number: 56194040 (US2014097420A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract:

Source: US2014097420A An organic light emitting diode display includes: a pixel region; and a peripheral region surrounding the pixel region, the peripheral region including: a gate common voltage line; an interlayer insulating film that covers the gate common voltage line and has a common voltage contact hole

exposing part of the gate common voltage line; a data common voltage line that is formed on the interlayer insulating film and comes in contact with the gate common voltage line via the common voltage contact hole; barrier ribs that cover the data common voltage line and have common ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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254) Family number: 56200122 (WO14054255A1) © PatBase

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Title: ORGANIC MATERIAL FOR FILM FORMATION AND

ORGANIC PHOTOELECTRIC CONVERSION ELEMENT OBTAINED USING SAME, IMAGE-CAPTURING ELEMENT, FILM FORMATION METHOD, AND METHOD FOR MANUFACTURING ORGANIC PHOTOELECTRIC CONVERSION ELEMENT

Abstract:

Source: WO14054255A1 [Problem] Stably manufacturing an organic photoelectric conversion

element, having few pixel defects, that is used in a light sensor. [Solution] An organic material (60) for film formation used for dry film formation of the light-receiving layer (30) of an organic photoelectric conversion element (1) used in a light sensor is the primary component of the constituent organic matter of the light-receiving layer (30), and contains less than 1.0 mass percent of substances that cannot be detected using high-performance liquid chromatography.

Assignee(s):(std): FUJIFILM CORP

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255) Family number: 56138565 (US2014091278A) © PatBase

Title: SURFACE TREATMENT OF NANOCRYSTAL QUANTUM DOTS AFTER FILM DEPOSITION

Abstract: Source: US2014091278A Provided are methods of surface treatment of nanocrystal quantum dots after film deposition so as to exchange the native ligands of the quantum dots for exchange ligands that result in improvement in charge extraction from the

nanocrystals.

Assignee(s):(std): FUKE NOBUHIRO ; KOPOSOV ALEXEY ; LOS ALAMOS NAT SECURITY LLC ; SYKORA MILAN ; SHARP KK

Assignee(s):

SHARP CORP ; LOS ALAMOS NATIONAL SECURITY LLC

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256) Family number: 56146423 (WO14050820A1) © PatBase

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Title: LAMINATE, METHOD FOR SEPARATING LAMINATE, AND

METHOD FOR EVALUATING SEPARATION LAYER

Abstract: Source: WO14050820A1 This laminate (1) is obtained by sequentially laminating, in the following order, a substrate (11), an adhesive layer (14), a separation layer (16) that changes in properties by absorbing light,

and a support plate (12). The optical density of the separation layer (16) is set to a value from 0.2 to 1.0

(inclusive). The present invention also comprises: a method for separating the laminate (1), which comprises a step for evaluating the optical density of the separation layer (16); and a method for evaluating a separation layer.

Assignee(s):(std): TOKYO OHKA KOGYO CO LTD

Assignee(s):

TOKYO OHKA KOGYO CO

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257) Family number: 56146855 (US2014116511A) © PatBase

Title: ACTIVE LAYER, ORGANIC PHOTOVOLTAIC CELL COMPRISING THE SAME AND MANUFACTURING METHOD THEREOF

Abstract: Source: US2014116511A The present specification provides a photoactive layer including an electron accepting material and an electron donating material, an organic photovoltaic cell including the same, and a method of manufacturing the organic photovoltaic cell, which includes treating the electron accepting material and the electron donating material by a non-solvent. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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258) Family number: 56158465 (TW201431147A) © PatBase

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Title: PHOTOACTIVE LAYER, ORGANIC PHOTOVOLTAIC CELL INCLUDING THE SAME, AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: TW201431147A The present specification provides a photoactive layer including an electron accepting material and an electron donating material, an organic photovoltaic cell including the same, and a method of manufacturing the organic photovoltaic cell, which includes treating the electron accepting material and the electron donating material by a non-solvent. ...

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s): LG CHEM LTD

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259) Family number: 56087262 (WO14048902A1) © PatBase

Title: OPTOELECTRONIC COMPONENT, METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT AND OPTOELECTRONIC COMPONENT DEVICE OPTOELEKTRONISCHES BAUELEMENT, VERFAHREN ZUM HERSTELLEN EINES OPTOELEKTRONISCHEN BAUELEMENTES UND OPTOELEKTRONISCHE BAUELEMENTEVORRICHTUNG

Abstract:

Source: WO14048902A1 Various embodiments of the invention relate to an optoelectronic component (100), said optoelectronic component (100) comprising: an optically active region (202) and an optically inactive region (204), the optically inactive region (204) being at least partially curved;the curved, optically inactive

region (204) being designed for connection of the optoelectronic component (100). In verschiedenen Ausfuehrungsbeispielen wird ein optoelektronisches Bauelement (100) bereitgestellt, das optoelektronische

Bauelement (100)aufweisend: einen optisch aktiven Bereich (202) und ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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260) Family number: 56087276 (WO14048898A1) © PatBase

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Title: OPTOELECTRONIC COMPONENT AND METHOD FOR

PRODUCING AN OPTOELECTRONIC COMPONENT OPTOELEKTRONISCHES BAUELEMENT UND VERFAHREN ZUM HERSTELLEN EINES OPTOELEKTRONISCHEN BAUELEMENTES

Abstract: Source: WO14048898A1 An optoelectronic component

(100) is provided in various embodiments, said optoelectronic component having: a carrier (102); an

organic, functional layer structure (112), wherein the organic functional layer structure (112) is formed on or over the carrier (102) and is designed to receive and/or provide electromagnetic radiation; an antireflective/getter layer structure arranged in the beam path of the organic functional layer structure (112), having getter material which has a lower mean refraction index than the organic functional layer structure (112); and an ...

Assignee(s):(std):

OSRAM OPTO SEMICONDUCTORS GMBH

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261) Family number: 56145148 (WO14048956A1) © PatBase

Title: ORGANIC OPTOELECTRONIC COMPONENT, METHOD FOR PRODUCING AN ORGANIC OPTOELECTRONIC COMPONENT AND METHOD FOR MATERIALLY BONDED ELECTRICAL CONTACTING ORGANISCHES, OPTOELEKTRONISCHES BAUELEMENT, VERFAHREN ZUM HERSTELLEN EINES ORGANISCHEN, OPTOELEKTRONISCHEN BAUELEMENTES UND VERFAHREN ZUM STOFFSCHLUESSIGEN,

ELEKTRISCHEN KONTAKTIEREN

Abstract: Source: WO14048956A1 An organic optoelectronic component (100, 200, 300, 800) is provided in various embodiments, the organic optoelectronic component having at least one contact pad (206, 208, 302, 304)

with a first electrical contact region (526) and a second electrical contact region (524). The first electrical contact region (526) and the second electrical contact region (524) are connected electrically to the contact

pad (206, 208, 302, 304) and the second electrical contact region (524) is designed such that it has a higher adhesion than the first electrical contact region (526), in ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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262) Family number: 56156594 (KR20140041064A) © PatBase

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Title: DEPOSITION APPARATUS

Abstract: Source: KR20140041064A Disclosed is a deposition apparatus. The deposition apparatus is a device for forming an organic thin layer by depositing vapor particles onto a substrate to be deposited, and includes: a chamber wherein the substrate is placed; an

evaporation source which is arranged to face the substrate, and which discharges the vapor particles;

and a cooling plate which is arranged between the substrate and the evaporation source, and which is formed with an opening, penetrating from one side to the other, so as to cool the vapor particles passing through the ...

Assignee(s):(std): SUNIC SYSTEM LTD

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263) Family number: 56156040 (KR20140040473A) © PatBase

Title: PLANAR TANDEM TYPE ORGANIC SOLAR CELL DEVICE AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR20140040473A A planar tandem type organic solar cell device which creates a high voltage in a single layer structure of the present invention comprises a first normal type organic solar cell device and a second inverted type organic solar cell device alternately arranged in the same plane, wherein the first organic solar cell device and the second organic solar cell device are connected in series. According to the present invention, an open-circuit voltage can be maximized by connecting the normal type organic solar cell device and the inverted type organic solar cell device ...

Assignee(s):(std):

KYUNGPOOK NAT UNIV IND ACAD

Assignee(s): KYUNGPOOK NATIONAL UNIV IND ACADEMIC COOPERATION FOUNDATION ; KYUNGPOOK NATIONAL UNIVERSITY INDUSTRY ACADEMIC COOPERATION

FOUNDATION

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264) Family number: 56033995 (US2014084252A) © PatBase

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Title: DOPED GRAPHENE TRANSPARENT CONDUCTIVE

ELECTRODE

Abstract: Source: US2014084252A Graphene is used as a replacement for indium tin oxide as a transparent conductive electrode which can be used in an organic light emitting diode (OLED) device. Using graphene reduces the cost of manufacturing OLED devices and also makes the OLED device extremely flexible. The graphene is chemically doped so that the work function of the graphene is shifted to a higher value for better hole injection into the OLED device as compared to an OLED device containing an undoped layer of graphene. An interfacial layer comprising a conductive polymer and/or metal oxide can ...

Assignee(s):(std): IBM

Assignee(s): INT BUSINESS MACHINES CORP

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265) Family number: 56033998 (US2014084253A) © PatBase

Title: TRANSPARENT CONDUCTIVE ELECTRODE STACK CONTAINING CARBON-CONTAINING MATERIAL

Abstract: Source: US2014084253A A transparent conductive electrode stack containing a work function adjusted carbon-containing material is provided. Specifically, the transparent conductive electrode stack includes a layer of a carbon-containing material and a layer of a work function modifying material. The presence of the work function modifying material in the transparent conductive electrode stack shifts the work function of the layer of carbon-containing material to a higher value for better hole injection into the OLED device as compared to a transparent conductive electrode that includes ...

Assignee(s):(std): IBM

Assignee(s): INT BUSINESS MACHINES CORP

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266) Family number: 56093469 (KR20140038844A) © PatBase

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Title: TOP DOWN LINEAR TYPE EVAPORATION SOURCE AND DOWNWARD EVAPORATOR FOR MANUFACTURING THE SUPER LARGE SIZE OLED THIN FILM

Abstract: Source: KR20140038844A The present invention relates to a particle-free top-down linear type evaporation source for manufacturing an ultra large scale OLED thin film in large quantities and an ultra large scale top-down OLED evaporator using the same. Multiple cylindrical nozzles are formed in a row at the bottom center part of a linear crucible of the top-down linear type evaporation source. The crucible and the nozzle are separated and heated so there is no hardening as organic matter evaporates downward. One or more top-down linear type evaporation sources are formed at the upper ...

Assignee(s):(std): KIM SEONG HEE

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267) Family number: 56022145 (US2014077324A) © PatBase

Title: SOLID-STATE IMAGE PICKUP DEVICE, METHOD OF MANUFACTURING SOLID-STATE IMAGE PICKUP DEVICE, AND ELECTRONIC APPARATUS

Abstract: Source: US2014077324A A solid-state image pickup device includes: a plurality of pixels each including an organic photoelectric conversion layer; a sealing layer that covers the pixels; and a first lens section provided

for each of the pixels and provided on a side, of the sealing layer, on which the organic photoelectric conversion layer is located. The first lens section is formed integrally with the sealing layer.

Assignee(s):(std): SONY CORP

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268) Family number: 56089826 (WO14046539A1) © PatBase

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Title: ELECTRO-OPTICAL DEVICE STACK

Abstract: Source: WO14046539A1 There is provided a method of manufacturing an electro-optical device stack (10), the method comprising providing a multi-layered structure comprising an electro-optical layer (13) contacting a charge injection layer (12), the charge injection layer

(12) comprising an acidic compound (12m); depositing a resist layer (14) onto the electro-optical layer (13),

the resist layer (14) comprising a cationically-crosslinkable resist material (14m); having the resist material (14m) react adjacent breaches (12',13') in the electro-optical layer (13) by a cross-linking reaction ...

Assignee(s):(std): TNO

Assignee(s): NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO

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269) Family number: 53054031 (US2014077322A) © PatBase

Title: WAVEGUIDE-BASED ENERGY CONVERTERS, AND ENERGY CONVERSION CELLS USING SAME

Abstract: Source: US2014077322A A layered waveguide stack radiant energy converter array having a plurality of superposed waveguides, each waveguide having a core layer having a radiant energy converter disposed therein, and two cladding layers disposed on opposing

sides of the core. In some embodiments the conductive layers are electrically coupled to the converter and act as charge carriers for it, and in other wires are provided for individual converters. Each waveguide has at least one inlet for passage of radiant energy therethrough, the inlet extending between the cladding layers, such

that ...

Assignee(s):(std): JEFFREY ANDLE C ; SOLARSORT TECHNOLOGIES INC ; WERTSBERGER SHALOM

Assignee(s): SHALOM WERTSBERGER ; ANDLE C JEFFREY

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270) Family number: 55984294 (JP2014055342A) © PatBase

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Title: FILM DEPOSITION APPARATUS

Abstract: Source: JP2014055342A PROBLEM TO BE SOLVED: To provide a vapor deposition apparatus which allows the uniformity of film thickness by stabilizing the control of evaporation rate to maintain actual evaporation rate to substrates during evaporation, and to provide an

evaporation method. SOLUTION: In a film deposition apparatus including a substrate holding mechanism to

hold a substrate, an evaporation source which is disposed at a position opposite to the substrate and evaporates to the substrate, and an evaporation source transportation mechanism which moves the evaporation source relatively ...

Assignee(s):(std): HITACHI HIGH TECH CORP ; HITACHI HIGH TECHNOLOGIES CO LTD

Assignee(s): HITACHI HIGH TECHNOLOGIES CORP ; HITACHI HIGH

TECHNOLOGIES CORPORATION

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271) Family number: 55978595 (US2014070197A) © PatBase

Title: METHOD FOR FORMING PATTERNED ORGANIC ELECTRODE

Abstract: Source: US2014070197A A method for forming a patterned organic electrode includes printing a toner on a surface of a substrate using a laser printer such that a reverse pattern formed of the toner is formed on the substrate, supplying a solution containing PEDOT and

PSS onto the substrate having the reverse pattern formed of the toner such that the solution containing PEDOT and PSS is supplied into a region of the surface of the substrate not covered with the reverse pattern, drying the solution containing PEDOT and PSS supplied onto the substrate, and supplying onto the substrate a

...

Assignee(s):(std): TOKYO ELECTRON LTD ; UNIV YAMANASHI

Assignee(s):

OF YAMANASHI UNIV ; UNIV OF YAMANASHI

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272) Family number: 56023733 (KR20140035179A) © PatBase

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Title: METHOD FOR FABRICATING ORGANIC PHOTOVOLTAIC MODULE WITH IMPROVED PERFORMANCE BY PARTITION AND ORGANIC PHOTOVOLTAIC MODULE FABRICATED THEREBY

Abstract: Source: KR20140035179A Disclosed are a method for manufacturing an organic photoelectric conversion module with improved performance using element partitioning, and an organic photoelectric conversion module manufactured thereby. According to the present invention, the method for manufacturing the organic

photoelectric conversion module comprises the steps of: forming a vertical division pattern structure which

has a predetermined length-to-width ratio of a transparent electrode on a transparent substrate; forming an electrode protecting layer and a charge collecting layer on the transparent ...

Assignee(s):(std): UNIV KYUNG HEE UNIV IND COOP

Assignee(s):

UNIVERSITY INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITY ; IND COOPERATION GROUP OF KYUNG HEE UNIV

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273) Family number: 55978372 (US2014070175A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY AND METHOD OF FABRICATING THE SAME

Abstract: Source: US2014070175A An organic light emitting diode (OLED) display is provided. The OLED display includes: a substrate; a first electrode on the substrate; a first pixel defining layer exposing at least a portion of the first electrode; a medium layer on the first pixel defining layer and the first electrode, the medium layer including a first region and a second region; a second pixel defining layer overlapping the first pixel defining layer with the first region therebetween; a light emission layer overlapping the first electrode with the first region therebetween; and a second ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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274) Family number: 55978364 (US2014070174A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DEVICE AND

METHOD FOR FABRICATING THE SAME

Abstract: Source: US2014070174A The organic light emitting diode (OLED) device includes a first substrate defined by a display area and a panel edge portion surrounding the display area, a thin film transistor, a first electrode connected to the thin film transistor, a bank formed on the first substrate, an organic light emitting layer formed on the display area of the first substrate, a second electrode formed on an entire surface of the first substrate having the organic light emitting layer, an anti-moisture permeation pattern formed on the second electrode on the bank located at the panel ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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275) Family number: 56022511 (KR20140033669A) © PatBase

Title: APPARATUS FOR COATING WITH PARYLENE

Abstract:

Source: KR20140033669A A parylene coating apparatus is provided. The parylene coating apparatus according to an embodiment of the present embodiment comprises; a gasification unit; a thermal decomposition unit connected with the gasification unit; a vapor deposition unit connected with the thermal

decomposition unit; and an inlet connecting the thermal decomposition unit and the vapor deposition unit, with a cross section area of the inlet being increased in a direction from the thermal decomposition unit toward the vapor deposition unit.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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276) Family number: 55974652 (WO14036894A1) © PatBase

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Title: MASK PLATE ASSEMBLY FOR EVAPORATING LARGE-SIZE OLED

Abstract: Source: WO14036894A1 A mask plate assembly for evaporating a large-size OLED comprises an outer mask frame (30), a mask portion (31), and a mask support portion (32). The mask portion (31) is connected to the mask support portion (32) fixed to the outer mask frame (30). The mask support portion (32) comprises N support portion units, N being greater than or equal to 2. The support portion unit is formed by support bars. The mask portion (31) is provided with a mask opening thereon, the support portion units do not shield the mask opening, and the opening forms a mask pattern area. ...

Assignee(s):(std): KUN SHAN POWER STENCIL CO LTD ; KUNSHAN POWER STENCIL CO LTD

Assignee(s): KUN SHAN POWER STENCIL CO ; KUNSHAN POWER STENCIL CO

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277) Family number: 52711264 (US2014061596A) © PatBase

Title: ORGANIC LIGHT-EMITTING DIODE DISPLAY PANEL AND MANUFACTURING METHOD FOR THE SAME

Abstract: Source: US2014061596A The present invention discloses an OLED display panel which includes a first TFT array substrate, a first cover and a structural stiffening glue. A first frit and a second frit of the first cover have the structural stiffening glue provided at an outer side thereof, and the structural stiffening glue is in contact with the first TFT array substrate and the first cover. The present invention further discloses a method for manufacturing the OLED display panel. The present invention enables more solid and stable for a structure of the OLED display panel. ...

Assignee(s):(std): SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN HUAXING OPTOELECT TEC ; WU TAI PI

Assignee(s):

SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN HUAXING OPTOELECTRONIC

TECHNOLOGY CO LTD ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO LTD

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278) Family number: 55892581 (WO14032874A1) © PatBase

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Title: RADIATION DETECTOR AND METHOD FOR PRODUCING

A RADIATION DETECTOR STRAHLUNGSDETEKTOR UND VERFAHREN ZUR HERSTELLUNG EINES STRAHLUNGSDETEKTORS

Abstract: Source: WO14032874A1 The invention relates to a radiation detector comprising a hybrid-organic

photodiode for X-ray detection. For charge carrier distribution that is as uniform as possible within the

entire absorption layer, the inorganic filler is varied within the organic absorption layer. This results in an approximately identical absorption rate over the entire thickness of the absorption layer. Die Erfindung betrifft einen Strahlendetektor mit einer hybrid-organischen Photodiode zur Roentgendetektion. Fuer eine moeglichst gleichmaessige Ladungstraegerverteilung innerhalb der gesamten ...

Assignee(s):(std): SIEMENS AG

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279) Family number: 55897728 (WO14034631A1) © PatBase

Title: ELECTRICITY-GENERATING LAYER OF SOLAR CELL, METHOD FOR PRODUCING SAME, AND SOLAR CELL

Abstract: Source: WO14034631A1 This electricity-generating layer (104) is of a solar cell (101) configured from a carbon nanotube group (111G), uses that which is vertically oriented as the carbon nanotubes (111) configuring the carbon nanotube group (111G), causes

fullerenes (112) to be encapsulated in each of the carbon nanotubes (111), causes an n-type dopant (113) to be encapsulated at one end side of the fullerenes (112) and causes a p-type dopant (114) to be encapsulated at the other end side of the fullerenes (112).

Assignee(s):(std): HITACHI SHIPBUILDING ENG CO ; UNIV KYOTO

Assignee(s): HITACHI ZOSEN CORP ; KYOTO UNIV

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280) Family number: 55353987 (US2014062909A) © PatBase

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Title: ORGANIC LIGHT EMITTING DISPLAY AND METHOD FOR

MANUFACTURING THE SAME

Abstract: Source: US2014062909A A organic light emitting display includes a plurality of touch pads spaced from one another in the touch pad portion, each of the touch pads including a metal pad layer and a transparent

electrode pad layer connected to the metal pad layer via a plurality of first contact holes in a first insulating

film, a dummy pad portion formed in the dead region of the first buffer layer, the dummy pad portion comprising a plurality of dummy pads corresponding to the touch pads, and a sealant comprising a plurality of conductive balls between the touch pad portion and the dummy pad ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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281) Family number: 55889839 (US2014065302A) © PatBase

Title: MASK AND FABRICATION METHOD OF ORGANIC LIGHT EMITTING MATERIAL LAYER

Abstract: Source: US2014065302A A mask is provided. The mask includes a plurality of first rows of openings and a plurality of second rows of openings. Each of the first rows of openings includes a plurality of first openings arranged in a row. The first openings located at

different first opening rows are aligned in a column direction. Each of the second opening rows includes a plurality of second openings arranged in a row. The second openings located at different second rows of openings are aligned in the column direction. The first opening rows and the second opening rows are

disposed alternately, ...

Assignee(s):(std): CHUNGHWA PICTURE TUBES LTD

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282) Family number: 55896225 (WO14032655A2) © PatBase

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Title: SEMICONDUCTOR COMPONENT WITH PROTECTED

FUNCTIONAL LAYER HALBLEITERBAUELEMENT MIT GESCHUETZTER FUNKTIONSSCHICHT

Abstract: Source: WO14032655A2 The invention relates to electronic components, especially semiconductor

components, and to a method for production thereof. It is an object of the present invention to provide a means

of protecting or stabilizing metal oxide functional layers of electronic components better than to date. To this end, the present invention provides an electronic component, especially a semiconductor component, which comprises a functional layer consisting of metal oxides or comprising metal oxides, the functional layer having been coated with a protective layer comprising a compound of ...

Assignee(s):(std): UNIV JACOBS BREMEN GMBH

Assignee(s): JACOBS UNIV BREMEN GGMBH

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283) Family number: 55900134 (US2014061595A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2014061595A An OLED display device is provided. The OLED display device includes a substrate segmented into a plurality sub-pixel regions, a thin film transistor formed in each of the sub-pixel regions, an insulating layer and a planarizion layer formed on the thin film transistor, a semitransparent reflective layer selectively formed in each sub-pixel region on the planarizion layer, a protective layer formed on the semitransparent reflective layer, an anode electrode formed in a region corresponding to the semitransparent reflective layer on the protective layer and ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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284) Family number: 55884887 (US2014057390A) © PatBase

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Title: MULTI-NOZZLE ORGANIC VAPOR JET PRINTING

Abstract: Source: US2014057390A Systems and methods are provided in which individual elements of a thin patterned film are deposited by two or more nozzles having different geometries. The different nozzle geometries may include one or more of different

throttle diameters, different exhaust diameters, different cross-sectional shapes, different bore angles,

different wall angles, different exhaust distances from the substrate, and different leading edges relative to the direction of movement of the nozzles or the substrate. Methods may include steps of ejecting a carrier gas and a material from a ...

Assignee(s):(std): BURROWS PAUL E ; MOHAN SIDDHARTH HARIKRISHNA ; UNIVERSAL DISPLAY CORP

Assignee(s): UNIVERSAL DISPLAY CORPORATION

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285) Family number: 55714856 (WO14029845A1) © PatBase

Title: METHOD FOR COATING A SUBSTRATE WITH MULTIPLE MATERIAL LAYERS, AND MULTI-MATERIAL DISPENSING DEVICE FOR SAID METHOD VERFAHREN ZUR BESCHICHTUNG EINES SUBSTRATS MIT MEHREREN MATERIALSCHICHTEN UND MEHRMATERIALIENABGABEEINRICHTUNG DAFUER

Abstract: Source: WO14029845A1 The invention relates to a

method for coating a substrate (8) with multiple material layers (21, 22, 23, 24, 25, 26, 27) made of at least two different materials (1, 2, 3, 4, 5, 6, 7). The material layers (21, 22, 23, 24, 25, 26, 27) are produced on the substrate (8) by means of a material dispensing device which can be controlled with respect

to the material dispensing rate, and the material dispensing device is a multi-material dispensing device (19). Stored quantities of the at least two different materials (1, 2, 3, 4, 5, 6, 7) are held available at the

same time in ...

Assignee(s):(std): UNIV BRAUNSCHWEIG TECH

Assignee(s): TECHNISCHE UNIV BRAUNSCHWEIG ; TECHNISCHE UNIV BRAUNSCHWEIG CAROLO WILHELMINA

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286) Family number: 55881034 (WO14030382A1) © PatBase

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Title: FILM FORMATION METHOD

Abstract: Source: WO14030382A1 A film formation method for forming an organic layer configured from a fluorine-containing resin on a substrate, the film formation method having a vapor deposition film forming step for forming the organic layer as a vapor-deposited film, a

film thickness measuring step for measuring the film thickness of the vapor-deposited film, and a

determination step for determining a parameter for feedback so as to correct a condition in the vapor deposition film forming step on the basis of the result of measuring the film thickness.

Assignee(s):(std): ULVAC INC

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287) Family number: 55883984 (US2014054582A) © PatBase

Title: DISPLAY DEVICE

Abstract:

Source: US2014054582A An inorganic insulating film containing nitrogen, which has high adhesion to a sealant and an excellent effect of blocking hydrogen, water, and the like, is used as a layer in contact with the sealant. Further, the sealant is provided on the outer side than a side surface of an end portion of the

organic insulating film provided over the transistor or the inorganic insulating film containing nitrogen is provided to cover an area from a region which is on the outer side than the edge of the organic insulating film to the side surface and the top surface of the end ...

Assignee(s):(std): SEMICONDUCTOR ENERGY LAB

Assignee(s): SEMICONDUCTOR ENERGY LAB CO LTD ; SEMICONDUCTOR ENERGY LABORATORY CO ;

SEMICONDUCTOR ENERGY LABORATORY CO LTD

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288) Family number: 55903297 (KR20140026714A) © PatBase

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Title: BOARD COATING APPARATUS WITH ROTATING DRUM

AND METHOD FOR COATING USING THE SAME

Abstract: Source: KR20140026714A The present invention provides a device for coating a substrate using a rotator comprising a rotator (100) which contains a substrate (B, B1) in the internal peripheral surface to be rotated;

and a solution spray means which is arranged in the rotator (100) to spray a coating solution (S) toward the

substrate when the rotator (100) is rotated, wherein the solution (S) is uniformly coated on the surface of the substrate by gravity and centrifugal force. With the above constitutions, the present invention has the advantages of coating the solution on the surface of the ...

Assignee(s):(std): KOREA ENERGY RESEARCH INST

Assignee(s): KOREA INST OF ENERGY RESEARCH ; KOREA

INSTITUTE OF ENERGY RESEARCH

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289) Family number: 55903299 (KR20140026713A) © PatBase

Title: SWING COATING APPARATUS FOR BOARD AND METHOD FOR SWING COATING USING THE SAME

Abstract: Source: KR20140026713A The present invention relates to an apparatus and a method for coating a substrate for coating a solution sprayed on the substrate by applying rotational centrifugal force and gravity and for evenly coating the solution on the

surface of the substrate by adjusting a rotational speed of a rotor depending on the density of the solution. The coating apparatus of the present invention comprises: a rotor which rotates around the axis of rotation; a fixing board disposed on the upper surface of the rotor, wherein the upper part of the fixing board is spaced

apart from the ...

Assignee(s):(std): KOREA ENERGY RESEARCH INST

Assignee(s):

KOREA INST OF ENERGY RESEARCH ; KOREA INSTITUTE OF ENERGY RESEARCH

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290) Family number: 55882388 (WO14031911A1) © PatBase

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Title: ANODES, SOLAR CELLS AND METHODS OF MAKING

SAME

Abstract: Source: WO14031911A1 Anodes, solar cells utilizing said anodes, and methods of manufacturing the same are disclosed. More specifically, the anodes disclosed herein may comprise a substrate made from a conducting material, and further comprise an array of nanowires projecting from the substrate. Solar cells that utilize an anode disclosed herein include nanoparticle-based cells and organic photovoltaic cells. The nanoparticle-based cells include dye sensitized solar cells and quantum dot/rod sensitized solar cells. The organic photovoltaic cells can include polymer solar cells, and ...

Assignee(s):(std): UNIV NORTHWESTERN

Assignee(s): NORTHWESTERN UNIV

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291) Family number: 54988320 (WO14029667A2) © PatBase

Title: METHOD AND DEVICE FOR LIGHT-INDUCED OR LIGHT-SUPPORTED DEPOSITING OF METAL ON A SURFACE OF A SEMICONDUCTOR COMPONENT VERFAHREN UND VORRICHTUNG ZUM LICHTINDUZIERTEN ODER LICHTUNTERSTUETZTEN ABSCHEIDEN VON METALL AUF EINER OBERFLAECHE EINES HALBLEITERBAUELEMENTS

Abstract:

Source: WO14029667A2 The invention relates to a method for light entrapment in coating baths, in order thereby to deposit metal on a surface of a semiconductor component in a light-induced or light-supported manner. The method comprises at least the following steps: A) providing the coating bath which

contains a matrix and a radiation deflecting component or is made of same; B) introducing the at least one semiconductor component into the coating bath; C) carrying out the light-induced or light-supported

deposition. Die Erfindung betrifft ein Verfahren zur Lichteinkopplung in ...

Assignee(s):(std): FRAUNHOFER GES FORSCHUNG ; FRAUNHOFER GESELLSCH Z FOERDERUNG D ANGEW FORSCHUNG E V

Assignee(s):

FRAUNHOFER GESELLSCH Z FOERDERUNG D ANGEW FORSCHUNG EV ; FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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292) Family number: 55798998 (WO14182192A8) © PatBase

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Title: FULLERENE DERIVATIVES WITH REDUCED ELECTRON

AFFINITY AND A PHOTOVOLTAIC CELL USING THE SAME

Abstract: Source: WO14182192A8 The present invention relates to the use of certain fullerene derivatives in optoelectronic devices, preferably in photovoltaic cells, especially preferably in organic photovoltaic cells to improve the open circuit voltage and energy conversion efficiency of solar cells. ...

Assignee(s):(std): INST OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES ; INST OF PROBLEMS OF CHEMICAL PHYSICS RAS ; LANXESS DEUTSCHLAND GMBH

Assignee(s):

OF PROBLEMS OF CHEMICAL PHYSICS OF RUSSIAN ACADEMY OF SCIENCES INST ; OF PROBLEMS OF CHEMICAL PHYSICS RAS INST

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293) Family number: 55888159 (KR20140023778A) © PatBase

Title: SOLAR CELL AND METHOD FOR MENUFATURING THE SAME

Abstract: Source: KR20140023778A A solar cell according to the present invention includes a substrate, a first electrode which is formed on the substrate, a metal oxide layer which is formed on the first electrode and includes a protrusion part, an active layer which is formed on the

metal oxide layer, a buffer layer which is formed on the active layer, and a second electrode which is formed on the buffer layer.

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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294) Family number: 55796111 (US2014042395A) © PatBase

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Title: THIN FILM TRANSISTOR SUBSTRATE AND METHOD

FOR MANUFACTURING THE SAME AND ORGANIC LIGHT EMITTING DEVICE USING THE SAME

Abstract: Source: US2014042395A Disclosed is a thin film transistor substrate which facilitates to improve output and transfer characteristics of thin film transistor,

wherein the thin film transistor substrate comprises a thin film transistor comprising a lower gate electrode on

a substrate, an active layer on the lower gate electrode, source and drain electrodes on the active layer, and an upper gate electrode on the source electrode, drain electrode and active layer, the upper gate electrode for covering a channel region defined by the source and drain electrodes; and a contact portion for ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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295) Family number: 52359001 (US2014041586A) © PatBase

Title: MASKING DEVICE FOR VAPOR DEPOSITION OF ORGANIC MATERIAL OF ORGANIC ELECTROLUMINESCENT DIODE

Abstract: Source: US2014041586A The present invention provides a masking device for vapor deposition of organic material of an organic electroluminescent diode, including a mask frame and a plurality of divide shallow masks mounted on the mask frame. Gaps are formed between the divide shallow masks. The gap formed between two adjacent ones of the divide shallow masks is identical. The mask frame is rectangular in shape and has a central portion forming a receiving opening. The number of the divide shallow masks is determined according to width of the receiving opening of the mask frame and widths ...

Assignee(s):(std):

SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO ; SHENZHEN HUAXING OPTOELECT TEC ; WANG YIFAN ; WU TAIPI

Assignee(s): SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY

CO ; SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO LTD ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO LTD

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296) Family number: 55758477 (WO14023781A1) © PatBase

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Title: METHOD FOR PRODUCING AN OPTOELECTRONIC

COMPONENT AND METHOD FOR PATTERNING AN ORGANIC, OPTOELECTRONIC COMPONENT VERFAHREN ZUM HERSTELLEN EINES OPTOELEKTRONISCHEN BAUELEMENTES UND VERFAHREN ZUM STRUKTURIEREN EINES ORGANISCHEN, OPTOELEKTRONISCHEN BAUELEMENTES

Abstract:

Source: WO14023781A1 In various exemplary embodiments, a method (300) for producing an organic, optoelectronic component (100, 200) is provided, the method (300) comprising: forming (304) a first layer (402, 502, 702) on or above a substrate (410) wherein the substrate (410) has at least one contact pad (202) of the organic, optoelectronic component (100, 200), wherein at least one electrode (110, 114) of the organic, optoelectronic component is electrically connected to the at least one contact pad

(202); forming (306) a second layer (108) on or above

the substrate (410); removing (310) at ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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297) Family number: 55761783 (WO14025236A1) © PatBase

Title: METHOD FOR PREPARING COMPOSITE METAL NANOPARTICLE/CARBON SPHERE, COMPOSITE METAL NANOPARTICLE/CARBON SPHERE PREPARED BY THE METHOD, AND ELECTROCHEMICAL DEVICE COMPRISING THE SPHERE

Abstract: Source: WO14025236A1 The present invention relates to a method for preparing a composite metal

nanoparticle/carbon sphere, to a composite metal nanoparticle/carbon sphere prepared by the method, and to an electrochemical device comprising the sphere. The method for preparing a composite metal nanoparticle/carbon sphere according to the present invention involves polymerization at the surfaces of

metal nanoparticles and carbonizing the thus-generated polymers by heat treatment, thus preparing a composite metal nanoparticle/carbon sphere in which metal nanoparticles are uniformly dispersed in ...

Assignee(s):(std):

IUCF HYU

Assignee(s): IUCF HYU INDUSTRY UNIV COOPERATION FOUNDATION HANYANG UNIVERSITY ; IUCF HYU INDUSTRY UNIVERSITY COOPERATION FOUNDATION HANYANG UNIVERSITY

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298) Family number: 55797047 (US2014045297A) © PatBase

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Title: NANOBALL SOLUTION COATING METHOD AND

APPLICATIONS THEREOF

Abstract: Source: US2014045297A The present invention discloses a nanoball solution coating method and applications thereof. The method comprises steps: using a scraper to coat a nanoball solution on a

substrate to attach a plurality of nanoballs on the substrate; flushing or flowing through the substrate

with a heated volatile solution to suspend the nanoballs unattached to the substrate in the volatile solution; and using the scraper to scrape off the volatile solution carrying the suspended nanoballs, whereby is simplified the process to coat nanoballs. The method can be used to fabricate ...

Assignee(s):(std): UNIV NAT CHIAO TUNG

Assignee(s): NATIONAL CHIAO TUNG UNIV

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299) Family number: 52913927 (WO14023097A1) © PatBase

Title: PREPARATION METHOD OF HETEROATOM DOPED MULTIFUNCTIONAL CARBON QUANTUM DOT AND APPLICATION THEREOF

Abstract: Source: WO14023097A1 Disclosed are a preparation method of a heteroatom doped multifunctional carbon quantum dot, and application of the heteroatom doped multifunctional carbon quantum dot in fields of

biomedicine, catalysts, and photoelectric devices. The heteroatom carbon quantum dot is prepared by using a conjugated polymer as a predecessor which is processed in a high temperature carbonization process. These carbon quantum dots comprise one or more of heteroatoms, such as N, S, Si, Se, P, As, Ge, Gd, B,

Sub-box, and Te, whose absorption spectrum ranges from 300 to 850 nm, and the ...

Assignee(s):(std): CHINESE ACAD TECH INST PHYSICS ; TECHNICAL INST

OF PHYSICS AND CHEMISTRY CHINESE AC ;

TECHNICAL INST OF PHYSICS AND CHEMISTRY CHINESE ACADEMY OF SCIENCES ; TECHNICAL INST PHYSICS AND CHEM

Assignee(s): TECHNICAL INST OF PHYSICS AND CHEMISTRY OF CHINESE ACADEMY OF SCIENCES

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300) Family number: 55719070 (US2014034483A) © PatBase

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Title: THIN FILM DEPOSITION APPARATUS AND METHOD OF

DEPOSITING THIN FILM USING THE SAME

Abstract: Source: US2014034483A A thin film deposition apparatus includes a process chamber that includes a reaction space, a plasma generating unit, and a sputtering unit. The plasma generating unit generates a

plasma in the reaction space. The sputtering unit is independently driven from the plasma generating unit

to form an electric field in the reaction space and to perform a sputtering process on a target using the plasma.

Assignee(s):(std):

SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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301) Family number: 55717300 (WO14020988A1) © PatBase

Title: ORGANIC THIN-FILM SOLAR CELL AND METHOD FOR PRODUCING SAME

Abstract: Source: WO14020988A1 Provided is an organic thin-film solar cell having excellent power generation performance as a result of optimizing the structure of a bulk heterojunction layer. The organic thin-film solar cell is provided with: a bulk heterojunction layer (13)

wherein p-type organic semiconductor domains (13a) and n-type semiconductor domains (13b) are present as separate phases; an anode (12) (or 14) positioned directly on one side of the bulk heterojunction layer (13) or with another layer therebetween; and a cathode anode (14) (or 12) positioned directly on the other side

of the ...

Assignee(s):(std): FUJI ELECTRIC CO LTD ; NAT INST OF ADV IND AND TECHNOL ; NATIONAL INSTITUTE OF ADVANCED

INDUSTRIAL SCIENCE AND TECHNOLOGY

Assignee(s): NATIONAL INST OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY ; NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL AND TECHNOLOGY ; NATIONAL INST OF ADVANCED INDUSTRIAL AND TECHNOLOGY ; FUJI ELECTRIC CO

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302) Family number: 55717301 (WO14020989A1) © PatBase

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Title: METHOD FOR MANUFACTURING ORGANIC THIN-FILM

SOLAR CELLS

Abstract: Source: WO14020989A1 Provided is a method for manufacturing organic thin-film solar cells, whereby bulk heterojunction thin-film solar cells having excellent power generation performance as a result of optimizing

the phase separation structure of a bulk heterojunction layer can be manufactured. The method for

manufacturing organic thin-film solar cells comprises: a first electrode forming step in which a first electrode layer is formed on a substrate; a coating step in which a coating film is formed by applying a coating liquid containing a p-type organic semiconductor, an n-type organic ...

Assignee(s):(std): FUJI ELECTRIC CO LTD ; NAT INST OF ADV IND AND TECHNOL ; NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY

Assignee(s): NATIONAL INST OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY ; NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL AND TECHNOLOGY ; NATIONAL INST OF ADVANCED INDUSTRIAL AND TECHNOLOGY ; FUJI ELECTRIC CO

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303) Family number: 52230380 (US2014026935A) © PatBase

Title: METHOD FOR MANUFACTURING ARRAY SUBSTRATE WITH EMBEDDED PHOTOVOLTAIC CELL AND ARRAY SUBSTRATE MANUFACTURED WITH SAME

Abstract: Source: US2014026935A The present invention provides a method for manufacturing array substrate with embedded photovoltaic cell and an array substrate manufactured with same. The method includes: (1)

providing a substrate; (2) forming a transparent conductive layer on the substrate; (3) forming a conductivity enhancing layer on the transparent conductive layer; (4) forming a photovoltaic layer on the conductivity enhancing layer; (5) forming a metal layer on the photovoltaic layer; (6) applying a masking

process to form an opening in the metal layer, the photovoltaic layer, the conductivity ...

Assignee(s):(std): SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN

HUAXING OPTOELECT TEC ; ZHANG XINDI

Assignee(s): SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO LTD ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO

LTD

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304) Family number: 54518623 (US2014026952A) © PatBase

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Title: TRANSPARENT CONDUCTIVE OXIDE THIN FILM

SUBSTRATE, METHOD OF FABRICATING THE SAME, AND ORGANIC LIGHT-EMITTING DEVICE AND PHOTOVOLTAIC CELL HAVING THE SAME

Abstract: Source: US2014026952A A transparent conductive oxide thin film substrate that has a high level of surface flatness, a method of fabricating the same, and an OLED and photovoltaic cell having the same. The transparent conductive oxide thin film substrate that includes a base substrate, a first transparent conductive oxide thin film formed on the base substrate, the first transparent conductive oxide thin film being treated with a first dopant, and a second transparent conductive oxide thin film formed on the first transparent conductive oxide thin film. The second transparent conductive ...

Assignee(s):(std): SAMSUNG CORNING PREC MAT CO

Assignee(s): SAMSUNG CORNING PRECISION MATERIALS CO ;

SAMSUNG CORNING PRECISION MATERIALS CO LTD ; CORNING PRECISION MATERIALS CO LTD

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305) Family number: 55702816 (DE102012106815A1) © PatBase

Title: VERFAHREN ZUR KONTAKTIERUNG OPTOELEKTRONISCHER BAUELEMENTE METHOD FOR CONTACTING OF OPTOELECTRONIC COMPONENTS INVOLVES CLOSING APERTURE IN CONTACT REGION ACCORDING TO ELECTRICAL CONTACT OF ELECTRICAL CONTACT REGION AND OPTOELECTRONIC COMPONENTS

Abstract: Source: DE102012106815A1 Die Erfindung betrifft ein Verfahren zur Kontaktierung optoelektronischer Bauelemente. The optoelectronic components module is laminated such that the laminate ion composite comprises aperture in the electrical contact region for electrical contact. The electrical contact region is electrically contacted to optoelectronic components. The aperture in the contact region is closed according to electrical contact of electrical contact region and optoelectronic components. An independent claim is included for optoelectronic component ...

Assignee(s):(std):

HELIATEK GMBH

306) Family number: 55702822 (DE102012106818A1) © PatBase

Title:

VERFAHREN ZUR KONTAKTIERUNG OPTOELEKTRONISCHER BAUELEMENTE METHOD FOR CONTACTING OPTOELECTRONIC COMPONENTS, INVOLVES EQUIPPING

CRIMPING TOOL WITH CRIMPING CONTACT, AND PERFORMING CRIMPING OPERATION SUCH THAT AN ELECTRICAL CONTACT BETWEEN CONNECTION CONDUCTOR AND CONNECTING ELEMENT IS PRODUCED

Abstract: Source: DE102012106818A1 Die Erfindung betrifft ein Verfahren zum Herausfuehren der erzeugten elektrischen Energie, ohne Beeintraechtigung der Diffusionsdichtigkeit aus optoelektronischen Bauelementen mittels Crimpen. The method involves performing electrical and mechanical connection by crimping procedure. The laminated module is positioned. The laminated module is provided with optoelectronic devices particular, the OPV modules organic photovoltaic modules and organic light emitting diodes. The mount type crimp contact is arranged above a connecting line. The crimping tool is ...

Assignee(s):(std): HELIATEK GMBH

307) Family number: 55665093 (DE102012106607A1) © PatBase

Title: VERFAHREN ZUR VERSIEGELUNG VON MODULEN MIT OPTOELEKTRONISCHEN BAUELEMENTEN METHOD FOR SEALING SOLAR MODULES E.G. ELECTRICAL FUNCTIONING UNENCAPSULATED SOLAR MODULES, IN INDUSTRIAL ENVIRONMENT, INVOLVES DIMENSIONING LENGTH OF SEMI-FINISHED PRODUCT BY CROSS-CUTTING, WHERE SEMI-FINISHED PRODUCT IS SEALED

Abstract: Source: DE102012106607A1 Die Erfindung betrifft ein Verfahren zur Versiegelung von Modulen umfassend zumindest zwei optoelektronische Bauelemente im Rolle-zu-Rolle-Verfahren. The

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method involves unwinding a semi-finished product comprising optoelectronic components e.g. organic LED, of a roller. Width of the semi-finished product is dimensioned by a separation process, and an electric contact is arranged on the semi-finished product by an application of contact reinforcement or conductive paste on the semi-finished product. Length of the semi-finished product is dimensioned by ...

Assignee(s):(std):

HELIATEK GMBH

308) Family number: 55667146 (WO14014375A1) © PatBase

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Title: ENHANCED MOBILITY FIELD-EFFECT TRANSISTORS

BASED ON POLYMER FILM CONTAINING INORGANIC NANOPARTICLES

Abstract: Source: WO14014375A1 The present invention relates to the field of organic and polymer electronics, more specifically it is related to the field of organic enhanced mobility devices, in particular, to the field of organic enhanced mobility transistors and manufacturing methods thereof. An organic field-effect transistor having an active layer made of organic semiconductor - inorganic semiconductor nanoparticles composite film and manufacturing methods thereof. The organic field-effect transistor includes a gate electrode formed on one side of a substrate; an insulating film formed on ...

Assignee(s):(std): ALESHIN ANDREY NIKOLAEVICH ; BOUGROV

VLADISLAV EVGENJEVICH ; BYCHKOVSKII DENIS NIKOLAEVICH ; KOVSH ALEXEY RUSLANOVICH ; ODNOBLYUDOV MAXIM ANATOLIEVICH ; OPTOGAN ORGANIC LIGHTNING SOLUTIONS LTD LIABILITY CO

Assignee(s): OPTOGAN ORGANIC LIGHTNING SOLUTIONS LIABILITY

CO LTD

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309) Family number: 55667454 (WO14015288A1) © PatBase

Title: MULTIJUNCTION ORGANIC PHOTOVOLTAICS INCORPORATING SOLUTION AND VACUUM DEPOSITED ACTIVE LAYERS

Abstract: Source: WO14015288A1 There is disclosed an organic photovoltaic device comprising at least one first subcell comprising at least one first small molecular weight material deposited by solution processing, and at least one second subcell comprising a weight at least one second small molecular material deposited by vacuum evaporation. Also disclosed herein is a method for preparing an organic photovoltaic device comprising at least one first subcell comprising at least one first small molecular weight material and at least one second subcell comprising at least one second small molecular ...

Assignee(s):(std): FORREST STEPHEN R ; LASSITER BRIAN ; UNIV

MICHIGAN

Assignee(s):

THE UNIV OF MICHIGAN

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310) Family number: 55622516 (US2014014921A) © PatBase

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Title: ORGANIC LAYER DEPOSITION APPARATUS, METHOD OF

MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY APPARATUS BY USING THE SAME, AND ORGANIC LIGHT-EMITTING DISPLAY APPARATUS MANUFACTURED BY THE METHOD

Abstract: Source: US2014014921A An organic layer deposition

apparatus includes: a conveyer unit including a transfer unit for attaching a substrate, a first conveyer unit, and

a second conveyer unit; and a deposition unit including a vacuum chamber and an organic layer deposition assembly for depositing an organic layer on the substrate. The organic layer deposition assembly includes: a deposition source for discharging a deposition material; a deposition source nozzle unit including a plurality of deposition source nozzles; a patterning slit sheet including a plurality of patterning slits that are ...

Assignee(s):(std):

SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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311) Family number: 55622513 (US2014014918A) © PatBase

Title: ORGANIC LAYER DEPOSITION APPARATUS, METHOD OF MANUFACTURING ORGANIC LIGHT EMITTING DISPLAY DEVICE USING THE APPARATUS, AND ORGANIC LIGHT EMITTING DISPLAY DEVICE MANUFACTURED USING THE METHOD

Abstract: Source: US2014014918A An organic layer deposition apparatus, a method of manufacturing an organic light-

emitting display device by using the same, and an organic light-emitting display device manufactured using the method, and in particular, an organic layer deposition apparatus that is suitable for use in the mass production of a large substrate and enables high-definition patterning, a method of manufacturing an

organic light-emitting display device by using the same, and an organic light-emitting display device manufactured using the method.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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312) Family number: 55622515 (US2014014920A) © PatBase

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Title: METHOD OF MANUFACTURING ORGANIC LIGHT-

EMITTING DISPLAY APPARATUS AND ORGANIC LIGHT-EMITTING DISPLAY APPARATUS MANUFACTURED BY USING THE METHOD

Abstract: Source: US2014014920A A method of manufacturing an organic light-emitting display apparatus and an

organic light-emitting display apparatus manufactured by using the method. A method of manufacturing an

organic light-emitting display apparatus includes continuously depositing an organic layer of a linear pattern on a substrate; depositing a second electrode on the organic layer; and forming a passivation layer on the second electrode to cover the second electrode.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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313) Family number: 55521383 (US2014011312A) © PatBase

Title: METHOD OF MANUFACTURING ORGANIC LIGHT EMITTING DISPLAY DEVICE

Abstract: Source: US2014011312A An organic light emitting display device is manufactured by: preparing a target substrate that includes sub-pixel areas (each having a thin film transistor) and pixel defining areas (each having a conductive layer) between the sub-pixel

areas; preparing an ionized deposition material by vaporizing and ionizing a deposition material; applying a ground voltage to one of the sub-pixel areas while applying a voltage having a same polarity as the ionized deposition material to the neighboring ones of the sub-pixel areas and to the pixel defining areas; and

depositing the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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314) Family number: 55519496 (US2014007814A) © PatBase

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Title: EVAPORATION DEVICE FOR A VACCUM DEPOSITION

APPARATUS AND VACUUM DEPOSITION APPARATUS COMPRISING SUCH AN EVAPORATION DEVICE

Abstract: Source: US2014007814A An evaporation device for a vacuum deposition apparatus includes a crucible to contain a material to be evaporated and a bottom, a

body and an opening, and a heating element surrounding at least partially the crucible body, the

evaporation device being placed inside a chamber with pressure <10-3 mbar. The device also includes at least one thermal shield between the crucible body and the heating element, the thermal shield including at least one element movable with respect to the crucible and designed so the heat received by the body of the crucible at a considered ...

Assignee(s):(std): RIBER

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315) Family number: 55629607 (KR20140005435A) © PatBase

Title: ORGANIC MATTER FEEDIGN APPARATUS AND METHOD

Abstract:

Source: KR20140005435A The present invention relates to an organic matter feeding apparatus which is capable of reducing charging time of an organic matter inside a crucible used in a deposition process. According to the present invention, provided is an organic matter feeding apparatus comprising: a shaft part for

connecting a cylinder part and a piston part; the cylinder part arranged on one side outside of the shaft for storing an organic matter which will be charged in the crucible; and a piston part equipped inside the shaft part to charge the organic matter stored in the cylinder part ...

Assignee(s):(std): SUNIC SYSTEM LTD

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316) Family number: 55475535 (US2014001454A) © PatBase

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Title: SOLID-STATE IMAGING DEVICE AND MANUFACTURING

METHOD THEREOF, AND ELECTRONIC APPARATUS

Abstract: Source: US2014001454A There is provided a solid-state imaging device including a semiconductor base element, an organic photoelectric conversion layer formed above the semiconductor base element, a

contact hole formed in an insulating layer on the semiconductor base element, a conductive layer formed

in the contact hole and electrically connecting a photoelectric conversion part which includes the organic photoelectric conversion layer with the semiconductor base element, and a contact portion which is formed by self-alignment with the conductive layer in the contact hole in the ...

Assignee(s):(std): SONY CORP

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317) Family number: 58775145 (DE102012105860A1) © PatBase

Title: PHOTOAKTIVES ORGANISCHES BAUELEMENT MIT EINER OPTISCH TRANSPARENTEN ELEKTRODE UND VERFAHREN ZUM HERSTELLEN PHOTO ORGANIC ACTIVE COMPONENT WITH AN OPTICAL TRANSPARENT ELECTRODE AND METHOD FOR PRODUCING (Machine translation)

Abstract: Source: DE102012105860A1 Die Erfindung betrifft ein

photoaktives organisches Bauelement mit einer Schichtanordnung, die auf einem Substrat mit einer Elektrode, einer Gegenelektrode und einem photoaktiven organischen Bereich gebildet ist, der zwischen der Elektrode und der Gegenelektrode angeordnet ist, wobei die Elektrode optisch transparent

ist und die folgenden Schichten aufweist: eine dielektrische Schicht aus dielektrischem Oxidmaterial, eine Benetzungsschicht aus metallischem Material, die auf der dielektrischen Schicht gebildet ist und die

dielektrische Schicht benetzt, und eine ...

Assignee(s):(std): HELIATEK GMBH

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318) Family number: 55475864 (US2014002331A) © PatBase

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Title: ORGANIC LIGHT EMITTING DISPLAY DEVICE AND

METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2014002331A An organic light emitting display device (OLED) includes: a multiple display in which a plurality of panels operate as a single display, wherein each of the panels comprise a substrate and a pixel; and a polarizing plate attached to the multiple display to bond the plurality of panels as a single panel, wherein the panels are divided into (i) display areas in which pixels are formed, and (ii) non-display areas surrounding the display areas, and at least two adjacent panels at an interpanel boundary are folded in the adjacent non-display areas to reduce the ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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319) Family number: 55473583 (US2014002427A) © PatBase

Title: HAPTIC DISPLAY DEVICE

Abstract:

Source: US2014002427A A haptic display device is disclosed. In one aspect, the device includes a plurality of scan lines disposed over a substrate and configured to transfer a scan signal and a plurality of data lines electrically insulated from the scan lines and configured to transfer a data signal, wherein the data lines cross

the scan lines. The device also includes a plurality of haptic control lines electrically insulated from the scan lines or the data lines and configured to transfer a haptic signal and a thin film transistor electrically connected to the scan lines and the data ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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320) Family number: 55481161 (US2015114291A) © PatBase

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Title: FILM FORMATION DEVICE

Abstract: Source: US2015114291A The present invention is to provide a technology for forming an organic compound film having a uniform thickness on a film at a high film formation speed while transporting the film in a vacuum chamber. In a vacuum chamber, a film reeled out from

a mother roll is transported in contact with a center roller and an organic compound film is formed on the

film. A vapor emission device disposed in a film deposition chamber provided in the vacuum chamber and having a vapor emission unit which emits and blows a vapor of an organic compound monomer to a film on the center ...

Assignee(s):(std): ULVAC INC

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321) Family number: 55481251 (US2015114290A) © PatBase

Title: ORGANIC THIN FILM FORMATION DEVICE

Abstract:

Source: US2015114290A The present invention forms an organic thin film at a high film formation rate by vapor of an organic compound generated by heating. A film formation chamber is disposed in the interior of a buffer chamber; a part of the side surface of a center roller is inserted in the film formation chamber from a

film formation chamber opening; and a base material film is run in close contact with the side surface in the part. The vapor is carried by a carrier gas from a vapor generation device connected to the film formation chamber; the center roller is cooled by a cooling device; ...

Assignee(s):(std): ULVAC INC

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322) Family number: 55482436 (JP2014005537A) © PatBase

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Title: METHOD OF FORMING LAYER ON ORGANIC

SEMICONDUCTOR LAYER

Abstract: Source: JP2014005537A PROBLEM TO BE SOLVED: To film an organic semiconductor with another layer while reducing damage to an organic semiconductor layer as compared with conventional arts, in a method of filming

a layer made of an organic semiconductor material with another layer through magnetron sputtering.

SOLUTION: For sputtering, at least one unbalanced magnetron (3; 4) is used which has a magnetic field intensity of at least 35 kA/m.

Assignee(s):(std):

FRAUNHOFER GES FORSCHUNG

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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323) Family number: 55406453 (US2013341598A) © PatBase

Title: ORGANIC LAYER DEPOSITION APPARATUS, METHOD OF MANUFACTURING ORGANIC LIGHT-EMITTING DISPLAY APPARATUS USING THE SAME, AND ORGANIC LIGHT-EMITTING DISPLAY APPARATUS MANUFACTURED USING THE METHOD

Abstract: Source: US2013341598A An organic layer deposition apparatus, a method of manufacturing an organic light-

emitting display device by using the same, and an organic light-emitting display device manufactured using the method, and in particular, an organic layer deposition apparatus that is suitable for use in the mass production of a large substrate and enables high-definition patterning, a method of manufacturing an

organic light-emitting display device by using the same, and an organic light-emitting display device manufactured using the method.

Assignee(s):(std): SAMSUNG DISPLAY CO ; SAMSUNG DISPLAY CO LTD

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324) Family number: 55474045 (DE102012210615A1) © PatBase

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Title: LEITPASTE UND VERFAHREN ZUR HERSTELLUNG EINER

SOLARZELLE CONDUCTIVE PASTE FOR FORMING ELECTRODE AND WIRING LAYER IN OR ON HETERO-JUNCTION SOLAR CELL, COMPRISES SILVER-ORGANIC COMPOUND AND/OR SILVER OXIDE AS METAL PRECURSORS, AND REDUCING AGENTS PROMOTING DECOMPOSITION OF METAL PRECURSORS

Abstract: Source: DE102012210615A1 Die Erfindung betrifft eine

Leitpaste (3') zur Bildung von metallischen Leitschichten in/auf Halbleitereinrichtungen, insbesondere Solarzellen, oder anderen elektrischen oder elektronischen Einheiten die im Wesentlichen frei von Metallpartikeln ist und als Metallprecursor eine silberorganische Verbindung und/oder Silberoxid enthaelt. Sie betrifft des Weiteren ein Verfahren zur Herstellung einer Solarzelle, insbesondere einer Heterouebergangs-Solarzelle. The paste comprises silver-organic compound i.e. silver carbonate, and/or

silver oxide as metal precursors in a ...

Assignee(s):(std): BOSCH GMBH ROBERT

Assignee(s): ROBERT BOSCH GMBH

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325) Family number: 55409716 (WO13190049A1) © PatBase

Title: METHOD FOR A CLOSE CONNECTION OF AN ORGANIC OPTOELECTRONIC COMPONENT TO A CONNECTION PIECE, CONNECTING STRUCTURE FOR A FRICTION-FITTING CONNECTION AND OPTOELECTRONIC COMPONENT DEVICE VERFAHREN FUER EIN SCHLUESSIGES VERBINDEN EINES ORGANISCHEN OPTOELEKTRONISCHEN BAUELEMENTES MIT EINEM VERBINDUNGSTUECK,

VERBINDUNGSSTRUKTUR FUER EIN

KRAFTSCHLUESSIGES VERBINDEN UND OPTOELEKTRONISCHE BAUELEMENTEVORRICHTUNG

Abstract: Source: WO13190049A1 In various embodiments, a method is described for a close connection (300) of an

organic optoelectronic component (100) to a connection piece (204), the method comprising: forming a first cavity (202) in an organic optoelectronic component (100), wherein the first cavity (202) has at least a first

opening; introducing a connecting structure (412, 422, 432, 502, 606, 614, 702, 704, 1202) through the first opening into the first cavity (202), wherein the connecting structure (412, 422, 432, 502, 606, 614, 702, 704, 1202) introduced has a first fixing area (302), wherein ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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326) Family number: 55517771 (TW201401599A) © PatBase

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Title: DYE-SENSITIZED SOLAR CELL AND METHOD FOR

FABRICATING THE SAME

Abstract: Source: TW201401599A The invention provides a dye-sensitized solar cell. The dye-sensitized solar cell comprises: a first conductive plastic substrate; a compact layer formed on the first conductive plastic

substrate; a porous semiconductor layer formed on the compact layer; and a dye formed on the porous

semiconductor layer; an electrolyte formed on the dye; a catalytic electrode formed on the electrolyte; a second conductive plastic substrate formed on the catalytic platinum electrode and a reflective film form on the second conductive plastic substrate. The invention also provides a ...

Assignee(s):(std): NATIONAL YUNLIN UNIV OF SCIENCE AND TECHNOLOGY ; UNIV NAT YUNLIN SCI AND TECH

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327) Family number: 54703861 (KR101304573B) © PatBase

Title: METHOD FOR IMPROVING LIGHT TO ELECTRIC ENERGY CONVERSION EFFICIENCY OF ORGANIC-INORGANIC HYBRID TANDEM MULTIJUNTION PHOTOVOLTAICS

Abstract: Source: KR101304573B PURPOSE: A method for improving the photoelectric conversion efficiency of an organic/inorganic complex tandem solar cell is provided to improve permeability by controlling the thickness of

a photoactive layer. CONSTITUTION: An ITO electron transport layer is laminated on the upper part of an inorganic photoactive layer. A lamination process is performed by a magnetron sputtering method. The inorganic photoactive layer consists of an amorphous silicon layer. The thickness of the photoactive layer is

controlled to improve the photoelectric conversion efficiency of a solar ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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328) Family number: 55416509 (KR20130142706A) © PatBase

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Title: ORGANIC SOLAR CELL MODULE AND METHOD FOR PREPARING THE SAME

Abstract: Source: KR20130142706A The present invention relates to an organic solar cell module and a manufacturing method thereof which form a functional layer as a whole surface thin film without patterning. The organic solar cell module of the present invention can increase process efficiency by reducing the number of required patterns as functional layers are not patterned and are formed as a whole surface thin film. Also, in the present invention, it is possible to achieve electrical connection among unit cells without pattern or shift of the functional layer, and thus, module efficiency can ...

Assignee(s):(std): INST SCIENCE AND TECH KWANGJU ; KWANGJU INST SCI AND TECH

Assignee(s): GWANGJU INST OF SCIENCE AND TECHNOLOGY ; GWANGJU INSTITUTE OF SCIENCE AND TECHNOLOGY

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329) Family number: 55416656 (KR20130142802A) © PatBase

Title: ORGANIC-INORGANIC HYBRID TANDEM MULTIJUNTION PHOTOVOLTAICS AND PREPARING METHOD FOR THEREOF

Abstract: Source: KR20130142802A The present invention relates to an organic/inorganic combination tandem solar cell and a manufacturing method thereof. More specifically, an organic/inorganic combination tandem

solar cell and a manufacturing method thereof, given in the present invention, include a substrate; a transparent electrode layer which is formed on the substrate; an inorganic photoactive layer which is stacked on the transparent electrode layer; an indium tin oxide electron transport layer which is stacked on

the inorganic photoactive layer; a polyethylene dioxythiophene (3,4-ethylene ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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330) Family number: 55373220 (US2013337720A) © PatBase

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Title: DEPOSITING APPARATUS AND METHOD FOR

MANUFACTURING ORGANIC LIGHT EMITTING DIODE DISPLAY USING THE SAME

Abstract: Source: US2013337720A A deposition apparatus includes a deposition source emitting a deposition material and an angle control member disposed on both

sides of the deposition source and controlling an emission direction angle of the deposition material. The

angle control member includes a housing having an internal space opened in an emission direction of the deposition material and a sliding member having a first end which is inserted into the internal space and a second end disposed on an emission path of the deposition material. The sliding member is movable forward and backward in ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO LTD A CHARTERED IN AND EXISTING UNDER LAWS OF REPUBLIC OF KOREA CORP ; SAMSUNG DISPLAY CO

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331) Family number: 52178449 (US2013334502A) © PatBase

Title: DISPLAY PANEL AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2013334502A The present invention provides a display panel and a method for manufacturing the same. The display panel comprises a substrate, pixels, active elements and storage capacitors, and the active elements and storage

capacitors are disposed in the pixels. Each of the storage capacitors includes a first storage electrode and a second storage electrode, and the second storage electrode is disposed in a recess of an insulating layer and positioned to the first storage electrode. In the method for manufacturing the display panel, portions of

the insulating layer are removed to ...

Assignee(s):(std): LIU YAWEI ; SHENZHEN CHINA STAR OPTOELECT ; SHENZHEN HUAXING OPTOELECT TEC

Assignee(s): SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO LTD ; SHENZHEN HUAXING OPTOELECTRONIC TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO ; SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO LTD

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332) Family number: 55415345 (KR20130141083A) © PatBase

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Title: INTER-DIFFUSED ORDERED BULKHETEROJUNCTION STRUCTURE OF ORGANIC PHOTOVOLTAICS SATISFYING BOTH OF EXITON DISSOCIATION AND CHARGE TRANSPORT

Abstract: Source: KR20130141083A According to the present invention, provided is a method for manufacturing an inter-diffused ordered heterojunction solar cell, which includes the steps of: forming a first polymer on a substrate; forming a charge moving path to an electrode by forming an uneven structure by nano-

imprinting the first polymer; performing a first annealing thermal treatment on the first polymer;

forming a second polymer on the uneven structure by a thermal deposition method; inter-diffusing the first polymer and the second polymer in a boundary and maintaining the charge moving path by ...

Assignee(s):(std): UNIV YONSEI IACF

Assignee(s):

ACADEMIC COOPERATION FOUNDATION YONSEI UNIV IND ; INDUSTRY ACADEMIC COOPERATION FOUNDATION YONSEI UNIVERSITY

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333) Family number: 55358625 (US2013333835A) © PatBase

Title: PROCESS FOR MANUFACTURING GAS PERMEATION BARRIER MATERIAL AND STRUCTURE

Abstract: Source: US2013333835A Hybrid inorganic-organic, polymeric alloys are prepared by combining atomic layer deposition and molecular layer deposition techniques provide barrier protection against intrusion of atmospheric gases such as oxygen and water vapor.

The alloy may be formed either directly on objects to be protected, or on a carrier substrate to form a barrier structure that subsequently may be employed to protect an object. The alloy thus formed is beneficially employed in constructing electronic devices such as photovoltaic cell arrays, organic light-emitting devices,

and other ...

Assignee(s):(std): CARCIA PETER FRANCIS ; DU PONT ; MCLEAN ROBERT SCOTT ; UNIV COLORADO

Assignee(s): OF COLORADO UNIV ; E I DU PONT DE NEMOURS AND CO

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334) Family number: 55414259 (KR20130140385A) © PatBase

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Title: ORGANIC SOLAR CELL INCLUDING METAL WIRING BURIED SUBSTRATES, AND THE PREPARATION METHOD THEREOF

Abstract: Source: KR20130140385A The present invention relates to an organic solar cell including a substrate including a metal wire and a manufacturing method thereof and, more particularly, to an organic solar cell including a substrate, a transparent electrode, a P-type conductive film, a photoactive layer, an N-type conductive film, and a metal electrode. The substrate includes embedded metal wires. The organic solar cell and the manufacturing method thereof are capable of improving light conversion efficiency of the solar cell by reducing the surface resistance of the transparent electrode ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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335) Family number: 55414262 (KR20130140386A) © PatBase

Title: METHOD FOR ORGANIC PHOTOVOLTAICS WITH REDUCED GRAPHENE OXIDE AND ORGANIC PHOTOVOLTATICS PREPARED THEREOF

Abstract: Source: KR20130140386A The present invention relates to a method for manufacturing an organic photovoltaic cell where a reduced graphene oxide is inserted into a hole transportation layer and a photovoltaic cell manufactured by the same and, more particularly, to a method for manufacturing an organic photovoltaic cell including the steps of: (step 1) forming a first electrode on the upper part of a substrate; (step 2) stacking a graphene oxide on the upper part of the first electrode of the step 1; (step 3) reducing the graphene oxide by annealing the stacked graphene oxide of the step ...

Assignee(s):(std):

KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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336) Family number: 55322553 (US2013328853A) © PatBase

Page 539: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY

Abstract: Source: US2013328853A An organic light emitting diode (OLED) display including a substrate; a scan line formed on the substrate and applying a scan signal; a data line and a driving voltage line intersecting the scan line and respectively applying a data signal and a driving voltage; a switching TFT connected to the scan line and data line; a driving TFT connected to a switching drain electrode TFT and the driving voltage line; an OLED connected to the driving drain electrode; a storage capacitor connected between the driving voltage line and the driving gate electrode; and a boosting ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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337) Family number: 55323310 (US2013330638A) © PatBase

Title: COATED SUBSTRATE AND PRODUCT INCLUDING THE SAME AND METHODS OF MAKING AND USING THE SAME

Abstract: Source: US2013330638A One embodiment may include a product including a substrate and a stress spring over the substrate. The stress spring may be constructed and arranged over the substrate so that the stress

spring prevents or limits damage or undesirable effects caused by subsequent operations performed on the substrate or upon subsequent exposure of the substrate to high strain conditions. The stress spring may include a layer including an alloy or polymer.

Assignee(s):(std): DADHEECH GAYATRI VYAS ; GM GLOBAL TECH OPERATIONS INC ; VERBRUGGE MARK W

Assignee(s): WILMINGTON TRUST CO ; GM GLOBAL TECHNOLOGY OPERATIONS LLC ; GM GLOBAL TECHNOLOGY OPERATIONS LLC ND GES D STAATES DELAWARE

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338) Family number: 55322114 (US2013328018A) © PatBase

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Title: FLUORINE-MODIFICATION PROCESS AND

APPLICATIONS THEREOF

Abstract: Source: US2013328018A The present invention is related to a process for reducing surface energy of a hole transport layer. The disclosed process comprises providing a hole transport layer; and providing a

fluorine-containing layer directly on said hole transport layer. The configuration of said fluorine-containing layer

reduces the structural disorder of an active layer and is able to recover a moisture-degraded hole transport layer, and thereby improves the performance of an electric device containing the same.

Assignee(s):(std): ACADEMIA SINICA ; CHANG CHING CHUN ; CHEN KUEI HSIEN ; CHEN LI CHYONG ; HAN HSIEH CHENG ; DU CHAN YI

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339) Family number: 55403244 (KR20130138486A) © PatBase

Title: ORGANIC SOLAR CELL AND PREPARING METHOD OF THE SAME

Abstract: Source: KR20130138486A Disclosed are an organic solar cell, which includes a transparent electrode and a metal electrode facing each other; and a photoelectric transformation layer between the transparent electrode and the metal electrode, wherein the photoelectric transformation layer includes metal nano places scattered in a blend of electron donors and electron acceptors, and a manufacturing method thereof. ...

Assignee(s):(std): UNIV SUNGKYUNKWAN RES AND BUS

Assignee(s): RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIV ; RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY

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340) Family number: 55355462 (US2014145165A) © PatBase

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Title: ORGANIC LIGHT EMITTING DISPLAY AND METHOD FOR

MANUFACTURING THE SAME

Abstract: Source: US2014145165A An organic light emitting display and a method for manufacturing the same are discussed. The organic light emitting display includes a substrate, an organic light emitting diode positioned on the substrate, and a bather covering the organic light emitting diode. The organic light emitting diode includes a first electrode, an organic layer, and a second electrode. The barrier includes at least one first block monomer layer and at least one second block monomer layer including inorganic precursors. The at least one first block monomer layer and the at least one ...

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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341) Family number: 55321837 (US2013327377A) © PatBase

Title: THIN FILM CHALCOGENIDE PHOTOVOLTAIC DEVICE AND METHOD FOR FORMING THE SAME

Abstract: Source: US2013327377A A thin film chalcogenide photovoltaic device and method for forming the same are disclosed. The thin film chalcogenide photovoltaic device includes a first electrode, a second electrode and an active layer disposed between the first electrode and

the second electrode, wherein the active layer includes a p-type chalcogenide semiconductor layer, an n-type inorganic semiconductor layer, and an n-type carbon-containing material layer formed between the p-type chalcogenide semiconductor layer and the n-type inorganic semiconductor layer.

Assignee(s):(std): TING CHING ; YANG FENG YU

Assignee(s): DELSOLAR CO LTD ; NEO SOLAR POWER CORP

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342) Family number: 55306268 (DE102012104844A1) © PatBase

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Title: OPTISCHES VERFAHREN ZUR UEBERWACHUNG UND

KONTROLLE FOTOAKTIVER BAUELEMENTE IM PRODUKTIONSPROZESS SYSTEM FOR MONITORING AND CONTROL OF PHOTOACTIVE COMPONENTS,HAS TEST SYSTEM THAT IS PROVIDED WITH OPTICAL MEASURING DEVICE, MONITORING AND EVALUATION SYSTEM AND ADJUSTABLE DIAPHRAGM

Abstract: Source: DE102012104844A1 Optisches Verfahren zur

ueberwachung und Kontrolle fotoaktiver Bauelemente im Produktionsprozess, bestehend aus wenigstens einer Teststruktur, einem Pruefsystem mit wenigstens einer optischen Messeinrichtung, wenigstens einem Kontroll- und Auswertungssystem und wenigstens einer regelbaren Blende, die eine beruehrungslose Schichtdickenmessung sowie eine Messung des elektrischen Widerstandes ermoeglicht. The system has a test structure (7) that is provided with an optical measuring device (1), a monitoring and evaluation

system and an adjustable diaphragm. The test ...

Assignee(s):(std): HELIATEK GMBH

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343) Family number: 55341692 (WO13182970A1) © PatBase

Title: METHOD FOR PRODUCING A FIRST ELECTRODE/ACTIVE LAYER/SECOND ELECTRODE STACK

Abstract: Source: WO13182970A1 A method for producing a first electrode/active layer/second electrode stack intended for an electronic device, in particular an organic photodetector or an organic solar cell, comprising the following steps: (a) deposition of a first layer (2) of conductive material on a substrate (1), to form the first electrode, (b) deposition of an active layer (3), in the form of an organic semiconductor thin layer, said layer comprising non-continuous areas (30), (c) local elimination, by chemical etching, of the first conductive layer (2), through the non-continuous areas ...

Assignee(s):(std): COMMISSARIAT ENERGIE ATOMIQUE ; ISORG ; COMMISSARIAT L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

Assignee(s): COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX

ENERGIES ALTERNATIVES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIESALTERNATIVES

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344) Family number: 55306689 (US2013323868A) © PatBase

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Title: DEPOSITION APPARATUS AND METHOD FOR

MANUFACTURING ORGANIC LIGHT EMITTING DIODE DISPLAY USING THE SAME

Abstract: Source: US2013323868A A deposition apparatus includes: a deposition source including a spray nozzle linearly arranged in a first direction and discharging a

deposition material; and a pair of angle control members disposed at both sides of the deposition

source and controlling a discharging direction angle of the deposition material. Each angle control member includes a rotation axis parallel to the first direction, and a plurality of shielding plates inst7lled about the rotation axis and separated from each other by a predetermined interval around the rotation axis. Although the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO LTD A OF REPUBLIC OF KOREA CORP ; SAMSUNG DISPLAY CO

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345) Family number: 51698138 (WO13179027A1) © PatBase

Title: METHOD OF PRODUCING A FILM

Abstract:

Source: WO13179027A1 A method of producing a film (1) is described. The film may be suitable for use as a plasmon-active electrode in a photovoltaic device. The method comprises forming on a substrate (2) at least one binding layer (3), depositing a metallic layer (4) that binds to the binding layer, and heating the metallic

layer so as to produce therein a plurality of apertures (5) each having a diameter of less than 300 nm, wherein the metallic layer after the heating has a sheet resistance of no more than twice the metallic layer before the heating.

Assignee(s):(std): UNIV WARWICK ; UNIV WARWICK THE

Assignee(s):

UNIVERSITY OF WARWICK THE ; OF WARWICK UNIV

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346) Family number: 55200265 (US2013316080A) © PatBase

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Title: FILM FORMING METHOD

Abstract: Source: US2013316080A According to an embodiment of the present disclosure, a method of forming a polyimide film on a substrate is disclosed. Such method can be easily controlled and form a polyimide film applicable as an insulation film. While a wafer is heated

at a temperature at which a polyimide film is formed, a cycle, in which the wafer is sequentially supplied with a

first processing gas, for example, containing a PMDA-based first monomer, and a second processing gas containing a non-aromatic monomer, for example, an HMDA-based second monomer, is performed for a predetermined number ...

Assignee(s):(std): TOKYO ELECTRON LTD

Assignee(s): TOKYO ELECTRON LIMITED

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347) Family number: 55200370 (US2013316545A) © PatBase

Title: FILM FORMING METHOD

Abstract:

Source: US2013316545A A method of forming a polyimide film on a surface of a substrate by dehydration condensation of a first monomer including a bifunctional acid anhydride and a second monomer including a bifunctional amine is disclosed. The method includes loading the substrate into a processing

chamber, heating the substrate at a temperature at which a polyimide film is formed, and performing a cycle a predetermined number of times. The cycle comprises supplying a first processing gas containing the first monomer to the substrate, supplying a second processing gas containing the second ...

Assignee(s):(std): TOKYO ELECTRON LTD

Assignee(s): TOKYO ELECTRON LIMITED

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348) Family number: 55316612 (JP2013244470A) © PatBase

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Title: COATING METHOD FOR FLUORINE-CONTAINING DRY

COATING AGENT

Abstract: Source: JP2013244470A PROBLEM TO BE SOLVED: To provide a coating method for a fluorine-containing dry coating agent not influenced by lots of a fluorine-containing organic silane compound, and capable of

uniformly and widely forming a film on a substrate. SOLUTION: A coating method for a fluorine-containing

dry coating agent is characterized by carrying out dry coating on a substrate by using a coating agent which is prepared by diluting 100 pts.mass of a fluorine-containing organic silane compound with 100 to 99,900 pts.mass of a solvent for the fluorine-containing dry coating agent, the ...

Assignee(s):(std): SHIN ETSU CHEMICAL CO LTD ; SHINETSU CHEMICAL CO

Assignee(s):

SHIN ETSU CHEMICAL CO

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349) Family number: 55204967 (WO13176056A1) © PatBase

Title: PHOTOELECTRIC CONVERSION ELEMENT, IMAGE CAPTURE ELEMENT, PHOTOELECTRIC CONVERSION ELEMENT FABRICATION METHOD, AND IMAGE CAPTURE ELEMENT FABRICATION METHOD

Abstract: Source: WO13176056A1 Provided are a photoelectric conversion element with which it is possible to alleviate an increase of dark current, an image capture element

employing this photoelectric conversion element, a method for fabricating this photoelectric conversion element, and a method for fabricating the image capture element. A photoelectric conversion element is formed by stacking, in this order, upon a substrate: a lower part electrode; an organic layer further

comprising a photoelectric conversion layer provided with a bulk hetero-structure body of a prescribed p-type organic ...

Assignee(s):(std):

FUJIFILM CORP

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350) Family number: 55296711 (KR20130130901A) © PatBase

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Title: HIGH CONDUCTIVE PEDOT:PSS THIN FILM ADDED ACETONE AND ORGANIC SOLAR CELLS USING IT

Abstract: Source: KR20130130901A The present invention relates to a method for manufacturing organic solar cells using a PEDOT:PSS thin film in which acetone is added to manufacture high efficiency organic solar cells as a hole transport layer. An existing organic solar cell uses a mixture of P3HT and PCBM as a photoactive layer and manufactures the organic solar cell by using a PEDOT:PSS as the hole transport layer. However, electrons and positive holes generated in the photoactive layer causes the loss of photoconversion efficiency caused by low mobility of thin films. The present invention is ...

Assignee(s):(std): UNIV YONSEI IACF

Assignee(s): ACADEMIC COOPERATION FOUNDATION YONSEI UNIV IND ; INDUSTRY ACADEMIC COOPERATION FOUNDATION YONSEI UNIVERSITY

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351) Family number: 52108797 (US2014097413A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY PANEL AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2014097413A Embodiments of the present invention provide an organic light emitting diode display panel and a method for manufacturing the same. The manufacturing method comprises: coating a photoresist layer on a transparent substrate with an active array

formed; performing exposure on the photoresist layer from one side of the transparent substrate opposed to the photoresist layer, where the scan lines and the at least one kind of lines are used as a mask to prevent exposure of the corresponding photoresist, so that a photoresist remaining region is formed by the

photoresist ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s):

BOE TECHNOLOGY GROUP CO

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352) Family number: 55187471 (WO13171549A1) © PatBase

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Title: ORGANIC TANDEM SOLAR CELL

Abstract: Source: WO13171549A1 The application discloses a photovoltaic device with a tandem structure. The photovoltaic device comprises a substrate, a first electrode layer, a second electrode layer, a recombination layer and intermediate transporting layers. The intermediate layer comprises a hole conducting layer and an electron conducting layer.

Furthermore, the device comprises a first photoactive layer and a second photoactive layer, wherein at least one of the first and second photoactive layers comprises a blend of a first organic donor material, a second organic donor material and an organic ...

Assignee(s):(std):

POA PATRICK ; ZEN ACHMAD ; ROBERT BOSCH SEA PTE LTD ; TREUTLER CHRISTOPH ; UNIV NANYANG TECH ; CHONG TECK KONG ; GOH RUI QUAN

Assignee(s):

NANYANG TECHNOLOGICAL UNIV

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353) Family number: 55205997 (KR20130128912A) © PatBase

Title: COMPLEX PRINTING APPARATUS

Abstract: Source: KR20130128912A The objective of the present invention is to provide a complex printing device which manufactures an organic solar battery by the printing process. In order to manufacture a solar battery having a first electrode layer, a first transmission layer, an active layer, a second transmission layer and a second electrode layer on a base substrate in a laminated structure, the complex printing device according to one embodiment of the present invention comprises a first printing unit for sequentially laminated printing the first transmission layer, the active layer and ...

Assignee(s):(std): KOREA MACH AND MATERIALS INST

Assignee(s): KOREA INST OF MACHINERY AND MATERIALS ; KOREA INSTITUTE OF MACHINERY AND MATERIALS

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354) Family number: 55171661 (US2015102311A) © PatBase

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Title: OPTOELECTRONIC COMPONENT AND METHOD FOR

PRODUCING AN OPTOELECTRONIC COMPONENT

Abstract: Source: US2015102311A An optoelectronic component may include a first organic functional layer structure, a second organic functional layer structure, and a charge generating layer structure between the first organic

functional layer structure and the second organic functional layer structure. The charge generating layer

structure includes a first electron-conducting charge generating layer, and a second electron-conducting charge generating layer. The second electron-conducting charge generating layer is formed from a single substance, and the substance of the first electron-conducting ...

Assignee(s):(std): OSRAM OLED GMBH ; OSRAM OPTO SEMICONDUCTORS GMBH

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355) Family number: 55188387 (US2015072075A) © PatBase

Title: FILM-FORMING APPARATUS AND FILM-FORMING METHOD

Abstract: Source: US2015072075A A film-forming apparatus includes an aerosol generation device which generates an aerosol including a solution of a film-forming material dispersed in a carrier gas, a chamber which vaporizes the aerosol such that fine particles of the

film-forming material are generated from the aerosol that is generated by the aerosol generation device, a nozzle which discharges the fine particles generated by the chamber toward a substrate, and a moving mechanism which executes relative movement of the nozzle and the substrate along a surface of the

substrate. The nozzle has a ...

Assignee(s):(std): TOKYO ELECTRON LTD

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356) Family number: 55189763 (US2013306946A) © PatBase

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Title: TOUCH DISPLAY PANEL

Abstract: Source: US2013306946A A touch display panel including a array substrate, an opposite substrate, an organic light emitting diode (OLED) structure, a plurality of conductive spacers and a sealant is provided. The OLED structure is disposed on the opposite substrate and located between the array substrate and the opposite substrate. The OLED structure includes a first electrode layer, an organic light emitting layer and a second electrode layer which are sequentially disposed. The first electrode layer is located on the opposite substrate and includes a plurality of touch sensing ...

Assignee(s):(std): CHANG TING YU ; CHANG YU CHENG ; HSU CHING FU ; WANG WEN CHUN ; WU YU HUA ; WINTEK CORP

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357) Family number: 55156775 (WO13169047A1) © PatBase

Title: ORGANIC ELECTROCHEMICAL DEVICE, AND METHOD FOR MANUFACTURING SAME

Abstract: Source: WO13169047A1 The present invention relates to an organic electrochemical device and to a method for manufacturing same. The organic electrochemical device according to the present invention comprises: a substrate; a first electrode arranged on the substrate;

an intermediate layer formed on the first electrode; a second electrode formed on the intermediate layer; and a first organic layer. At least a portion of the first organic layer contacts the second electrode and the intermediate layer.

Assignee(s):(std): LG CHEMICAL LTD

Assignee(s):

LG CHEM LTD

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358) Family number: 55114178 (US2013293499A) © PatBase

Page 572: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: TOUCH-SENSITIVE DISPLAY DEVICE AND

FABRICATION METHOD THEREFOR

Abstract: Source: US2013293499A A touch-sensitive display device includes a substrate, an OLED structure and a cover plate. The OLED structure is disposed on the substrate and includes a first electrode layer, a light-emitting layer and a second electrode layer. The first electrode layer is disposed on the substrate, the light-emitting layer is disposed on the first electrode layer, and the second electrode layer is disposed on the light-emitting layer and patterned to form a plurality of touch-sensing electrodes. The cover plate is disposed opposite the substrate and spaced at an interval from ...

Assignee(s):(std): WINTEK CORP

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359) Family number: 52130184 (KR20120109422A) © PatBase

Title: NANO CUO ADDED ORGANIC THIN FILM AND ELECTRONIC DEVICE USING IT

Abstract: Source: KR20120109422A PURPOSE: An organic thin film and an electric component using the same are provided to offer high permeability and excellent hole conduction by adding nano cupric oxide material, thereby improving efficiency of a solar cell.

CONSTITUTION: A nano cupric oxide material is mixed in PEDOT:PSS aqueous solution. A mixture is manufactured by randomly distributing the nano cupric oxide material in the PEDOT:PSS aqueous solution. The mixture is laminated on an anode as a thin film. A work function of the thin film is diminished by heat-treating

the thin film. A hole transport ...

Assignee(s):(std): UNIV YONSEI IACF

Assignee(s):

ACADEMIC COOPERATION FOUNDATION YONSEI UNIV IND ; INDUSTRY ACADEMIC COOPERATION FOUNDATION YONSEI UNIVERSITY

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360) Family number: 54326739 (DE102012207245B3) © PatBase

Page 575: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: VERFAHREN UND VORRICHTUNG ZUM HERSTELLEN EINES BAUTEILTRAEGERVERBUNDS, VERFAHREN ZUM HERSTELLEN VON BAUTEILTRAEGERN, UND BAUTEILTRAEGER METHOD FOR MANUFACTURING COMPOSITE COMPONENT CARRIER FOR SUPPORTING E.G. ORGANIC LED ON CIRCUIT BOARD, INVOLVES ISOLATING CARRIER ELEMENTS OF LEADFRAME FROM EACH OTHER AND EMBEDDING ISOLATED CARRIER ELEMENTS IN MOLD MATERIAL

Abstract: Source: DE102012207245B3 In verschiedenen

Ausfuehrungsbeispielen wird ein Verfahren zum Herstellen eines Bauteiltraegerverbunds (50) bereitgestellt, bei dem ein Leiterrahmen (10), der mehrere Traegerelemente (12) aufweist, die ueber Verbindungselemente (14) miteinander verbunden sind, bereitgestellt wird. Der Leiterrahmen (10) wird in einem Formwerkzeug (20) angeordnet, das zum Einbetten des Leiterrahmens (10) in Formwerkstoff (40) ausgebildet ist. Bei dem in dem Formwerkzeug (20) angeordneten

Leiterrahmen (10) werden die Verbindungselemente

(14) des Leiterrahmens (10) durchtrennt, wodurch ...

Assignee(s):(std): OSRAM OPTO SEMICONDUCTORS GMBH

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361) Family number: 55108139 (WO13164761A1) © PatBase

Title: METHOD FOR THE DEPOSITION OF AN ORGANIC MATERIAL

Abstract: Source: WO13164761A1 The present invention relates to a method for the deposition of at least one layer of an organic material on a substrate by (a) providing a source of a solid organic material in an atmosphere at a pressure comprised between 50 and 200 kPa, (b)

heating said organic material to a first temperature to produce a vapor of said organic material, (c) exposing at least one surface of a substrate having a second temperature lower than said first temperature to said vapor to deposit organic material from said vapor onto said at least one surface of said ...

Assignee(s):(std): BASF CHINA CO LTD ; BASF SCHWEIZ AG ; BASF SE

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362) Family number: 55034239 (WO13164268A1) © PatBase

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Title: DEVICE AND METHOD FOR THE SURFACE TREATMENT

OF A SUBSTRATE AND METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT VORRICHTUNG UND VERFAHREN ZUR OBERFLAECHENBEHANDLUNG EINES SUBSTRATS UND VERFAHREN ZUM HERSTELLEN EINES OPTOELEKTRONISCHEN BAUELEMENTS

Abstract: Source: WO13164268A1 In various embodiments, a

device for the surface treatment of a substrate (30) is provided. The device has at least one process head (22), which is rotatably supported about an axis of rotation (58) and which has a plurality of gas outlets (50), which are formed at least partially on a radially outer edge of the process head (22). In verschiedenen Ausfuehrungsformen wird eine Vorrichtung zur Oberflaechenbehandlung eines Substrats (30) bereitgestellt. Die Vorrichtung weist einen um eine Drehachse (58) drehbar gelagerten Prozesskopf (22)

auf, der mehrere Gasauslaesse ...

Assignee(s):(std): OSRAM GMBH

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363) Family number: 55103483 (KR20130121561A) © PatBase

Title: SLOT DIE AND METHOD FOR MANUFACTURING ORGANIC SOLAR CELL

Abstract: Source: KR20130121561A The present invention relates to a method for injecting a material on a

substrate successively supplied. A first main body is formed in a chamber for supplying the material on one surface. A second main body faces the first main body.

A guide part is located between the first main body and the second main body, connects the chamber towards a substrate to drop the material and injects the dropped material onto the substrate successively supplied.

Assignee(s):(std): DCN CO LTD ; KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC ; DCN CO

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364) Family number: 55103493 (KR20130121566A) © PatBase

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Title: SLOT DIE AND METHOD FOR MANUFACTURING ORGANIC SOLAR CELL

Abstract: Source: KR20130121566A The present invention relates to a slot die which coats a substrate which is continuously supplied with materials. The present invention includes: a chamber; a housing which includes at least one path which is connected to the chamber in a substrate direction; and at least one

protrusion part which is located on the same plane as

at least one path, protrudes in the substrate direction, and sprays the materials which are discharged from at least one path.

Assignee(s):(std): DCN CO LTD ; KOLON INC

Assignee(s): KOLON IND INC ; KOLON INDUSTRIES INC ; DCN CO

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365) Family number: 55004088 (US2013277645A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE DISPLAY AND MANUFACTURING METHOD THEREOF

Abstract: Source: US2013277645A A manufacturing method of an organic light emitting diode (OLED) display according to an exemplary embodiment includes: forming a thin film transistor panel; forming a deposition mask on the thin film transistor panel by a photolithography process; obliquely spraying an organic material to the deposition mask from a linear deposition source to form an organic emission layer on the thin film transistor panel; and removing the deposition mask by using an adhering film, wherein the deposition mask includes a plurality of deposition walls configured to block the ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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366) Family number: 52105228 (WO13155845A1) © PatBase

Page 584: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: METHOD FOR MANUFACTURING ARRAY SUBSTRATE,

ARRAY SUBSTRATE, AND DISPLAY DEVICE

Abstract: Source: WO13155845A1 Provided are a method for manufacturing an array substrate, the array substrate, and a display device. The array substrate may comprise a display area and a non-display area. The display area comprises a gate line, a data line (8), and multiple pixel units defined by the gate line and by the data line (8). Each pixel unit may comprise a thin-film transistor, a pixel electrode (12), and a common electrode (16). The pixel electrode (12) is connected to a drain electrode (7) of the thin-film transistor. An organic insulating film (10) may be arranged between the pixel ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD ; HEFEI BOE OPTOELECTRONICS TECH ; HEFEI BOE

OPTOELECTRONICS TECHNOLOGY CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO ; HEFEI BOE OPTOELECTRONICS TECHNOLOGY CO

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367) Family number: 55001699 (WO13156609A1) © PatBase

Title: METHOD FOR PREPARING A PHOTOVOLTAIC THIN FILM HAVING A HETEROJUNCTION

Abstract:

Source: WO13156609A1 The present invention relates to a method for preparing a photovoltaic thin film having a heterojunction by depositing a composition, including a first organic electron-donor semiconductor CP and a second organic electron-acceptor semiconductor CN, onto a substrate and then carrying out phase segregation, including: a step (E1) of preparing a first mixture M1 including the organic semiconductors CN and CP within a solvent medium; and then a step (E2) of adding an additive, having at least one N3 function, to said mixture.

Assignee(s):(std):

CENTRE NAT RECH SCIENT ; D ANGERS UNIV ; ECOLE NATIONALE SUPERIEURE DE CHIMIE DE MONTPELLIER ; DE BORDEAUX I UNIV ; INST POLYTECHNIQUE DE BORDEAUX ; ECOLE NALE SUP ARTES METIERS ; INST POLYTECHNIQUE BORDEAUX ; MONTPELLIER 2 SCIENCES ET TECH UNIV ; RHODIA OPERATIONS ; UNIV BORDEAUX 1 ; UNIV MONTPELLIER II ; UNIV ANGERS

Assignee(s): POLYTECHNIQUE DE BORDEAUX INST ; MONTPELLIER 2 SCIENCES ET TECHNIQUES UNIV ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS

368) Family number: 54986220 (DE102012206502A1) © PatBase

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Title: VORRICHTUNG ZUM FRONTSEITENBERUEHRUNGSFREIEN TRANSPORT VON BANDFOERMIGEM MATERIAL DEVICE FOR FRONT CONTACT-FREE TRANSPORT OF E.G. FLEXIBLE ORGANIC LED MATERIAL, HAS DEFLECTION UNIT PROVIDED ON CARRIER STRIP IN SUCH WAY THAT CARRIER TAPE TO BE COATED BAND-SHAPED MATERIAL TOUCHES ON REAR SIDE

Abstract: Source: DE102012206502A1 Der Erfindung, welche eine Vorrichtung zum frontseitenberuehrungsfreien Transport von bandfoermigem Material zwischen einer

ersten und einer zweiten Prozesswalze betrifft, bei welcher zwischen den Prozesswalzen ein Umlenkmittel zum Verdrehen des Bandlaufs des bandfoermigen Materials gegenueber dem von der ersten Prozesswalze bestimmten Bandlaufs angeordnet ist, welches eine Drehachse aufweist die zur Drehachse dieser ersten

Prozesswalze einen von 0 degrees verschiedenen Winkel einschliesst, liegt die Aufgabe zugrunde, eine Vorrichtung anzugeben welche einen ...

Assignee(s):(std):

ARDENNE ANLAGENTECH GMBH

Assignee(s): VON ARDENNE ANLAGENTECHNIK GMBH

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369) Family number: 54985094 (DE102012103448A1) © PatBase

Title: VERFAHREN ZUR OPTIMIERUNG VON IN REIHE GESCHALTETEN, PHOTOAKTIVEN BAUELEMENTEN AUF GEKRUEMMTEN OBERFLAECHEN METHOD FOR OPTIMIZATION OF E.G. PIN TANDEM CELL ON CURVED SURFACE, INVOLVES ADJUSTING FLAT SURFACE OF PHOTOACTIVE COMPONENT BASED ON POSITION OF PHOTOACTIVE COMPONENT ON CURVED SURFACE AND EMISSION ANGLE OF RADIATION

Abstract: Source: DE102012103448A1 Die Erfindung betrifft ein Verfahren zur Optimierung von photoaktiven Bauelementen auf gekruemmten Oberflaechen. The method involves placing the photoactive elements with electrode and a counter electrode, on the curved

surfaces. An active layer is located between the electrode and counter-electrode. The flat surface of the photoactive component is adjusted based on the position of the photoactive component on the curved

surface and the emission angle of radiation. An independent claim is included for module for optimization of photoactive ...

Assignee(s):(std): HELIATEK GMBH

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370) Family number: 54975239 (US2013269766A) © PatBase

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Title: INVERTED ORGANIC SOLAR CELL AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2013269766A An inverted organic solar cell including a fiber type substrate, a cathode layer formed on the fiber type substrate, an electron transport layer comprising nanorods formed on the cathode layer, a photoactive layer formed on the electron transport layer, a hole transport layer formed on the photoactive layer, and an anode layer formed on the hole transport layer. ...

Assignee(s):(std): SAMSUNG ELECTRONICS CO LTD

Assignee(s): SAMSUNG ELECTRONICS CO

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371) Family number: 54972795 (US2013270600A) © PatBase

Title: FUNCTIONALIZATION OF A SUBSTRATE

Abstract:

Source: US2013270600A A method of increasing a work function of an electrode is provided. The method comprises obtaining an electronegative species from a precursor using electromagnetic radiation and reacting a surface of the electrode with the electronegative species. An electrode comprising a functionalized

substrate is also provided.

Assignee(s):(std): HELANDER MICHAEL ; LU ZHENG HONG ; OTI LUMIONICS INC ; QIU JACKY ; WANG ZHIBIN

Assignee(s):

OTI LUMIONICS INC1055 BAY STREETUNIT #1711TORONTOO1M5S 3A3CA ; QIU JACKY1711 - 1055 BAY STREETTORONTOO1M5S 3A3CA ; WANG

ZHIBIN1102 - 44 ST. JOSEPH STREETTORONTOO1M4Y 2W4CA ; LU ZHENG HONG556 DAVISVILLE AVENUETORONTOO1M4S 1J5CA ; HELANDER MICHAEL904 - 298 JARVIS STREETTORONTOO1M5B 2M4CA

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372) Family number: 54962151 (DE102012206111A1) © PatBase

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Title: FOTOELEKTRISCHES HALBLEITERELEMENT MIT

UNREGELMAESSIG VERLAUFENDEN LEITERBAHNEN AN EINER OBERFLAECHE FLAT PHOTOELECTRIC SEMICONDUCTOR ELEMENT E.G. LED FOR USE IN E.G. OPTICAL COUPLER, HAS CONTACT ARRANGEMENT PROVIDING ELECTRIC CONTACT FOR LAYER ARRANGEMENT AND INCLUDING STRIP CONDUCTORS THAT RUN WITH RESPECT TO EDGE OF LAYER ARRANGEMENT

Abstract: Source: DE102012206111A1 Ein fotoelektrisches Halbleiterelement umfasst eine fotoaktive Schichtanordnung mit einer ersten Oberflaeche, einer entgegengesetzten zweiten Oberflaeche und einem Rand. Das fotoelektrische Halbleiterelement umfasst auch eine erste Kontaktanordnung aus einem elektrischen Leitermaterial, die zumindest bereichsweise an der ersten Oberflaeche angeordnet ist und konfiguriert ist, einen ersten elektrischen Kontakt

fuer die fotoaktive Schichtanordnung bereitzustellen.

Ferner umfasst das fotoelektrische Halbleiterelement eine zweite Kontaktanordnung aus einem elektrischen ...

Assignee(s):(std): FRAUNHOFER GES FORSCHUNG

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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373) Family number: 54981389 (JP2013216955A) © PatBase

Title: VACUUM VAPOR DEPOSITION APPARATUS

Abstract:

Source: JP2013216955A PROBLEM TO BE SOLVED: To provide a vacuum vapor deposition apparatus in which a plurality of line-shaped evaporation sources are arranged in multiple-stages to the film deposition direction and which allows co-vapor deposition without changing film deposition order in a forward path and a

reverse path. SOLUTION: A vacuum vapor deposition apparatus for depositing a film of a vapor deposition material on a substrate 2 has an evaporation source group 3 formed by arranging a plurality of line-shaped evaporation sources 3-A, 3-B so as to be symmetric to the film deposition ...

Assignee(s):(std): HITACHI HIGH TECH CORP

Assignee(s): HITACHI HIGH TECHNOLOGIES CORP ; HITACHI HIGH

TECHNOLOGIES CORPORATION

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374) Family number: 54923013 (DE102012007009A1) © PatBase

Title: ERZEUGUNG VON ORGANISCHEN SOLARZELLEN UND PHOTODIODEN MIT ELEKTRONENSTRAHLBESCHUSS METHOD FOR MANUFACTURING ELECTRONIC PN-JUNCTION OF ORGANIC SEMICONDUCTOR FOR E.G. ORGANIC PHOTOVOLTAIC CELL, INVOLVES EXCITING ELECTRON PARTICLE BEAMS WITH PRESET ENERGIES, FOR STRUCTURAL CHANGE IN ORGANIC SEMICONDUCTOR

Abstract: Source: DE102012007009A1 Herstellung von p-n-uebergaengen in organischen Halbleitern insbesondere fuer Solarzellen und Photodioden mittels Teilchenstrahlbeschuss insbesondere mit Elektronenstrahlen zur Defekterzeugung in der kristallinen oder molekularen Struktur unter Einbezug von Excitonenprozessen.

The method involves using electron particle beams for structural change in organic semiconductor. The energy of electron particle beams is in range of 1-100 keV. The excitation process of electron particle beams is performed to produce pn-junction in organic ...

Assignee(s):(std): HORA HEINRICH

375) Family number: 54973989 (US2015075606A) © PatBase

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Title: INTEGRATED CONDUCTIVE SUBSTRATE, AND

ELECTRONIC DEVICE EMPLOYING SAME

Abstract: Source: US2015075606A Provided are an integrated conductive substrate simultaneously serving as a substrate and an electrode, and an electronic device using the same. The integrated conductive substrate

includes a conductive layer containing iron, which has a first surface having a first root mean square roughness,

and a semiconductor layer containing a semiconductor material, which has a second surface having a second root mean square roughness and is formed on the first surface. Here, the semiconductor layer includes a semiconductor-type planarization layer formed by a solution process ...

Assignee(s):(std): POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH

ACADEMY INDUSTRY FOUNDATION

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376) Family number: 54973990 (WO13154355A1) © PatBase

Title: INTEGRATED CONDUCTIVE SUBSTRATE, AND ELECTRONIC DEVICE EMPLOYING SAME

Abstract: Source: WO13154355A1 Provided are an integrated conductive substrate and an electronic device employing same. The integrated conductive substrate comprises: a metal layer, a first surface of which has a first surface roughness value and which is made of a

nonferrous metal; and a semiconductor layer which is formed on the first surface, a second surface of which has a second surface roughness value, and which contains a semiconductor material. The semiconductor layer includes a semiconductor planarization layer formed by a solution process using the semiconductor

material and/or a precursor ...

Assignee(s):(std): POSTECH ACAD IND FOUND

Assignee(s):

POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION

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377) Family number: 54949478 (US2014298898A) © PatBase

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Title: TESTING APPARATUS AND TESTING METHOD

Abstract: Source: US2014298898A A testing apparatus and a testing method are disclosed. The testing apparatus has a testing assembly. The testing assembly includes a first plate body, a testing paper, and a second plate body. The first plate body has a plurality of pins; the

testing paper includes a plurality of first through holes whose locations correspond to the plurality of pins. The

second plate body connects with the testing paper and has a plurality of second through holes whose locations correspond to the first through holes for allowing the plurality of pins to pass through the corresponding ...

Assignee(s):(std): DAINIPPON INK AND CHEMICALS ; WISTRON CORP

Assignee(s): DAINIPPON INK ; DIC CORP

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378) Family number: 54918185 (US2013263924A) © PatBase

Title: ORGANIC SOLAR CELL COMPRISING SELF-ASSEMBLED ORGANIC/INORGANIC NANOCOMPOSITE IN PHOTOACTIVE LAYER, AND METHOD FOR PREPARING THE SAME.

Abstract: Source: US2013263924A The present invention relates to an organic solar cell having an enhanced light efficiency by using an organic/inorganic nanocomposite in which a metal nanorod and an electron acceptor are self-assembled, in a photoactive layer, and a method of preparing the same. According to the present invention, since the metal nanorod and the electron acceptor are self-assembled, separated electrons are easily transported, and since electron transport via a metal is easier than that via an organic material, the electron transport speed via the metal nanorod of the present ...

Assignee(s):(std):

INST SCIENCE AND TECH KWANGJU ; KWANGJU INST SCI AND TECH

Assignee(s): GWANGJU INST OF SCIENCE AND TECHNOLOGY ;

GWANGJU INSTITUTE OF SCIENCE AND TECHNOLOGY

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379) Family number: 54953205 (KR20130113216A) © PatBase

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Title: METHOD FOR MANUFACTURING INVERTED ORGANIC SOLAR CELLS COMPRISING MULTI TRANSPARENT ELECTRODE

Abstract: Source: KR20130113216A PURPOSE: A method for manufacturing an inverted organic solar cell including a multilayered transparent electrode is provided to reduce the number of manufacturing processes and facilities by using a printing method. CONSTITUTION: A transparent negative electrode layer (221) is arranged on a substrate. A metal layer (223) and an electron absorbing layer (225) are arranged on the substrate. A multilayered transparent electrode (220) is composed of the transparent negative electrode layer, the metal layer, and the electron absorbing layer. The multilayered ...

Assignee(s):(std): UNIV KYUNG HEE UNIV IND COOP

Assignee(s): UNIVERSITY INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITY ; IND COOPERATION GROUP OF KYUNG HEE UNIV

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380) Family number: 54911955 (WO13147189A1) © PatBase

Title: CURABLE RESIN COMPOSITION FOR VAPOR DEPOSITION, RESIN PROTECTIVE FILM, ORAGNIC OPTICAL DEVICE, AND METHOD FOR MANUFACTURING ORGANIC OPTICAL DEVICE

Abstract: Source: WO13147189A1 A purpose of the present invention is to provide a curable resin composition for vapor deposition, which can be vapor deposited on a base at low temperatures with high vapor deposition efficiency, and which is capable of forming a vapor deposition film that exhibits excellent adhesion to an inorganic material film. Another purpose of the present invention is to provide: a resin protective film which is produced using the curable resin composition for vapor deposition; an organic optical device; and a method for manufacturing an organic optical device. The present ...

Assignee(s):(std):

SEKISUI CHEMICAL CO LTD

Assignee(s): SEKISUI CHEMICAL CO

381) Family number: 54906236 (US2013255754A) © PatBase

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Title: PHOTOVOLTAIC DEVICE AND METHOD OF

FABRICATING THEREOF

Abstract: Source: US2013255754A An organic/inorganic hybrid photovoltaic device architecture. In some variations, power conversion efficiencies approach 1 percent. Some variations include an unexpected order of

magnitude improvement of power conversion efficiency approaching 5 percent. Methods of fabricating a

photovoltaic device, including depositing over a first electrode an organic semiconductor layer; depositing over the organic semiconductor layer a cross-linking ligand layer; depositing over the cross-linking ligand layer an inorganic nanocrystal layer; and depositing a second electrode over the ...

Assignee(s):(std): CAMBRIDGE ENTPR LTD ; EHRLER BRUNO ; FRIEND RICHARD HENRY ; WALKER BRIAN ; GREENHAM NEIL CLEMENT

Assignee(s): CAMBRIDGE ENTERPRISE LTD

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382) Family number: 54910838 (US2015118504A) © PatBase

Title: SURFACE TREATMENT COMPOSITION AND ARTICLE OBTAINED USING SAME

Abstract:

Source: US2015118504A A surface-treating composition including a fluorine-containing polymer which is able to form a layer having both high surface slip property and high friction durability. The surface-treating composition includes a first compound (a reactive fluorine-containing polymer which is a fluorine-containing silane polymer) and a second compound (a non-reactive fluorine-containing polymer which is a fluorine-containing oil), and the proportion of the first compound is 15 to 70 percent by mass with respect to the total mass of the first compound and the second ...

Assignee(s):(std): DAIKIN IND LTD

383) Family number: 54915547 (JP2013206820A) © PatBase

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Title: ORGANIC EL DEVICE MANUFACTURING APPARATUS

AND ORGANIC EL DEVICE MANUFACTURING METHOD

Abstract: Source: JP2013206820A PROBLEM TO BE SOLVED: To provide an organic EL device manufacturing apparatus or organic EL device manufacturing method which can reduce the number of driving mechanisms and enables

higher-definition vapor deposition. SOLUTION: The organic EL device manufacturing apparatus or organic

EL device manufacturing method can have N substrates (N greater than or equal to 2) disposed inside, and includes the steps of opposing the substrates to an evaporation source and performing vapor deposition of a vapor deposition material onto the substrates with reciprocating movement of ...

Assignee(s):(std): HITACHI HIGH TECH CORP ; SAMSUNG DISPLAY CO LTD

Assignee(s):

HITACHI HIGH TECHNOLOGIES CORP ; HITACHI HIGH TECHNOLOGIES CORPORATION ; SAMSUNG DISPLAY CO

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384) Family number: 54906702 (US2013256677A) © PatBase

Title: DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF

Abstract: Source: US2013256677A A display device is provided, which includes a transparent substrate, an active device array, a solar cell structure and an electrophoretic display film. The transparent substrate has an upper surface and a lower surface opposite to each other. The

active device array has a plurality of pixel structures, in which the pixel structures are disposed on the upper surface of the transparent substrate. The solar cell structure is directly disposed on the lower surface of the transparent substrate. The electrophoretic display film is disposed over the transparent substrate and ...

Assignee(s):(std): E INK HOLDINGS INC

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385) Family number: 54939071 (JP2013204081A) © PatBase

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Title: CU-GA ALLOY SPUTTERING TARGET AND METHOD FOR

PRODUCING THE SAME

Abstract: Source: JP2013204081A PROBLEM TO BE SOLVED: To provide a target having a cast structure of good quality in which oxygen is reduced and a segregation phase is dispersed. SOLUTION: A melted and cast flat Cu-Ga

alloy sputtering target includes 15 at percent or more and 22 at percent or less of Ga, with the remainder

being Cu and inevitable impurities. The Cu-Ga alloy sputtering target has a structure comprising an a phase in which Ga is solid-solved in Cu or a mixed-phase of an a phase and a ? phase. A dendritic structure is dispersed in the structure comprising the a phase or the mixed-phase ...

Assignee(s):(std): JX NIPPON MINING AND METALS CORP

Assignee(s): JX NIPPON MINING AND METALS CORPORATION

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386) Family number: 54910378 (US2015087098A) © PatBase

Title: METHOD FOR MANUFACTURING ORGANIC THIN-FILM ELEMENT, APPARATUS FOR MANUFACTURING ORGANIC THIN-FILM ELEMENT, METHOD FOR FORMING ORGANIC FILM, AND METHOD FOR MANUFACTURING ORGANIC EL ELEMENT

Abstract: Source: US2015087098A A method for reducing an internal pressure of a vacuum chamber while

preventing impurity contamination within the vacuum chamber as much as possible. The method includes: rough pumping reducing an internal pressure of a vacuum chamber (1) by using a roughing pump (2), the roughing pump (2) being a mechanical pump that is capable of reducing the internal pressure of the vacuum

chamber (1) to be less than 15 Pa; main pumping reducing the internal pressure of the vacuum chamber (1) by using a main pump (3) after the rough pumping, the main pump (3) being a non-mechanical ...

Assignee(s):(std):

MATSUSHITA ELECTRIC INDUSTRIAL CO LTD ; PANASONIC CORP

Assignee(s): JOLED INC

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387) Family number: 54915370 (JP2013204152A) © PatBase

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Title: ORGANIC MATTER VAPOR DEPOSITION SYSTEM

Abstract: Source: JP2013204152A PROBLEM TO BE SOLVED: To provide a substrate conveying system capable of minimizing tack time, in a process of loading two substrates into a chamber and then performing organic matter vapor deposition. SOLUTION: In a vapor

deposition system including a process chamber 20 and a transfer chamber 10, a substrate support base

supporting a substrate 21, a mask support base located on the lower side of the substrate support base to support a mask 23, and a substrate align block disposed in the upper part of the substrate support base to align the mask and the substrate are ...

Assignee(s):(std): SNU PRECISION CO LTD

Assignee(s): SNU PRECISION CO

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388) Family number: 54807909 (US2013249877A) © PatBase

Title: FLAT PANEL DISPLAY DEVICE AND METHOD OF FABRICATING THE SAME

Abstract: Source: US2013249877A Discussed is a flat panel display device in which a protective pattern is formed on a lower surface of an upper film so that when the upper film is cut, link lines of a display panel formed in a cutting region is not damaged.

Assignee(s):(std): LG DISPLAY CO LTD

Assignee(s): LG DISPLAY CO

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389) Family number: 54898196 (KR20130107143A) © PatBase

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Title: METHOD OF MANUFACTURING FLEXIBLE ORGANIC SOLAR CELL INCLUDING NANO-PATTERNED HOLE EXTRACTION LAYER AND FLEXIBLE ORGANIC SOLAR CELL MANUFACTURED BY THEM

Abstract: Source: KR20130107143A PURPOSE: A method for manufacturing a flexible organic solar cell including a nanopatterned hole extraction layer and the flexible organic solar cell manufactured by the same are provided to improve production speed by using a roll-to-roll process. CONSTITUTION: A hole extraction layer is formed on the upper surface of a first electrode. A nanopattern is formed on the hole extraction layer. A photoactive layer (14) is formed on the upper surface of the hole extraction layer. An electron extraction layer (15) is formed on the upper surface of the photoactive layer. ...

Assignee(s):(std): POSCO

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390) Family number: 54756082 (US2013241076A) © PatBase

Title: ELECTRONIC DEVICE WITH REDUCED NON-DEVICE EDGE AREA

Abstract: Source: US2013241076A A first product may be provided that comprises a substrate having a first surface, a first side, and a first edge where the first surface meets the first side; and a device disposed over the substrate, the device having a second side, where

at least a first portion of the second side is disposed within 3 mm from the first edge of the substrate. The first product may further comprise a first barrier film that covers at least a portion of the first edge of the substrate, at least a portion of the first side of the substrate, and at least the first portion of the second ...

Assignee(s):(std): BROWN JULIA J ; BROWN JULIE J ; HAN LIN ; KRALL EMORY ; SILVERNAIL JEFF ; MANDLIK PRASHANT ; MA RUIQING ; SILVERNAIL JEFFREY ; PAYNTER JASON ;

UNIV PRINCETON ; PRINCETON UNIV OFFICE OF

TECHNOLOGY AND TRADEMARK LICENSING ; WAGNER SIGURD ; UNIVERSAL DISPLAY CORP ; WALSKI LUKE

Assignee(s): UNIVERSAL DISPLAY CORPORATION ; PRINCETON UNIV

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391) Family number: 54754090 (JP2013185252A) © PatBase

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Title: EVAPORATION SOURCE APPARATUS, VACUUM

DEPOSITION APPARATUS, AND METHOD FOR PRODUCING ORGANIC EL DISPLAY DEVICE

Abstract: Source: JP2013185252A PROBLEM TO BE SOLVED: To provide a vacuum deposition apparatus and a deposition apparatus which allow high-speed film

formation of an aluminum metal thin film for an organic EL upper electrode with uniform film thickness on a

large substrate and which enable long periods of continuous operation. SOLUTION: By using a mechanism in which vapor deposition is performed by laterally operating a row of evaporation sources 3-2 obtained by longitudinally arranging evaporation sources 3-1 tilted at a predetermined angle in the same direction, high-speed film formation of a metal ...

Assignee(s):(std): HITACHI HIGH TECH CORP

Assignee(s):

HITACHI HIGH TECHNOLOGIES CORP ; HITACHI HIGH TECHNOLOGIES CORPORATION

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392) Family number: 54711621 (US2013234193A) © PatBase

Title: ETCHED TRENCHES IN BOND MATERIALS FOR DIE SINGULATION, AND ASSOCIATED SYSTEMS AND METHODS

Abstract: Source: US2013234193A Etched trenches in a bond material for die singulation, and associated systems and methods are disclosed. A method for solid state transducer device singulation in accordance with one

embodiment includes forming a plurality of trenches by etching through a metallic bond material forming a bond between a carrier substrate and a plurality of the dies and singulating the carrier substrate along the trenches to separate the dies. In particular embodiments, the trenches extend into the carrier

substrate. In further particular embodiments, the dies are at least partially ...

Assignee(s):(std): FREI JEREMY S ; MICRON TECHNOLOGY INC ;

ODNOBLYUDOV VLADIMIR ; SCHELLHAMMER SCOTT D

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393) Family number: 54741077 (US2015021826A) © PatBase

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Title: SILANE BASED COATING OF ALUMINIUM MOLD

Abstract: Source: US2015021826A A method of preparing an aluminum mold for injection molding is provided, the method comprises the steps of providing an aluminum mold having a least one surface, subjecting the at least one surface to a gas or liquid phase silane to thereby

form an anti-stiction coating, the anti-stiction coating comprising a chemically bonded monolayer of silane

compounds on the at least one surface wherein the silane is a halogenated silane. The at least one surface coated with the anti-stiction coating may be configured to withstand an injection molding process at a pressure above ...

Assignee(s):(std): TECHNICAL UNIV OF DENMARK ; UNIV DANMARKS TEKNISKE

Assignee(s): DANMARKS TEKNISKE UNIVERSITET

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394) Family number: 55296147 (KR20130130175A) © PatBase

Title: ORGANIC SOLAR CELL AND ITS MANUFACTURING METHOD

Abstract: Source: KR20130130175A The purpose of the present invention is to provide an organic solar cell with improved power conversion efficiency and a manufacturing method for the same. In order to achieve the aforementioned purpose the present invention of an organic solar cell comprises: a first electrode provided on a substrate, being one of an anode or cathode, and formed with a reflecting layer; a second electrode arranged to be opposite to the first electrode and being the other of the anode or cathode; and a light activating layer arranged between the first and second electrodes and ...

Assignee(s):(std): POSCO ; POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH ACADEMY INDUSTRY FOUNDATION

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395) Family number: 54704646 (US2015104936A) © PatBase

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Title: CONDUCTIVE NANOWIRE FILMS

Abstract: Source: US2015104936A The invention provides a novel conductive film and a multilayered conductive structure, comprising a plurality of metal nanowires arranged in clusters and having an average aspect ratio of least 100,000, optionally decorated by metal

nanoparticles. It is also disclosed a process for preparation of a conductive film comprising metal

nanowires by surfactant/template assisted method which involves the use of a precursor solution based on surfactant (such as CTAB), metal precursor (such as HAuC14 and AgN03) and reducing agent (such as metal borohydride or sodium ...

Assignee(s):(std): P V NANO CELL LTD ; UNIV RAMOT

Assignee(s): PV NANO CELL LTD ; RAMOT AT TEL AVIV UNIV LTD

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396) Family number: 51821958 (US2014175385A) © PatBase

Title: OLED DEVICE, AMOLED DISPLAY DEVICE AND METHOD FOR MANUFACTURING SAME

Abstract: Source: US2014175385A Embodiments of the invention disclose an OLED device, an AMOLED display device and a method for manufacturing the AMOLED display device. the AMOLED display device comprises a TFT active layer, a pixel electrode layer and an OLED device; the OLED device comprises a cathode layer and a functional layer, and the pixel electrode layer serves as the anode layer of the OLED device; alternatively, the OLED device comprises an anode layer and a functional layer, and the pixel electrode layer serves as the cathode layer of the OLED device. Moreover, the TFT active layer and ...

Assignee(s):(std):

BOE TECHNOLOGY GROUP CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO

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397) Family number: 54620245 (WO13127662A1) © PatBase

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Title: LUMINESCENT, CADMIUM-FREE CORE/MULTI-SHELL

QUANTUM DOTS ON THE BASIS OF INDIUM PHOSPHIDE LUMINESZIERENDE, CADMIUMFREIE KERN-MULTISCHALEN-QUANTENPUNKTE AUF BASIS VON INDIUMPHOSPHID

Abstract:

Source: WO13127662A1 The present invention relates to cadmium-free core/multi-shell quantum dots, a

method for producing such cadmium-free core/multi-shell quantum dots, the use thereof and optoelectronic components having the cadmium-free core/multi-shell quantum dots. Die vorliegende Erfindung betrifft cadmiumfreie Kern-Multischalen-Quantenpunkte, ein Verfahren zur Herstellung solcher cadmiumfreien Kern-Multischalen-Quantenpunkte, deren Verwendung und optoelektronische Bauelemente, die cadmiumfreie Kern-Multischalen-Quantenpunkte ...

Assignee(s):(std):

FRAUNHOFER GES FORSCHUNG ; FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E V ; KOREA ELECTRONICS TECHNOLOGY

Assignee(s): KOREA ELECTRONICS TECHNOLOGY INST ; FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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398) Family number: 51916908 (US2014054565A) © PatBase

Title: OTFT ARRAY SUBSTRATE, DISPLAY DEVICE AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2014054565A According to embodiments of the present invention, there are disclosed an organic thin film transistor (OTFT) array substrate, a display device and a method for manufacturing the same, which are capable of improving quality of a channel.

The OTFT array substrate comprises: a transparent substrate, a gate line and a data line which are formed on the transparent substrate, and a pixel unit which are defined by crossing of the gate line and the data line; the pixel unit including an organic thin film transistor (OTFT) and a pixel electrode; on a channel region of an

active ...

Assignee(s):(std): BOE TECHNOLOGY GROUP CO LTD

Assignee(s):

BOE TECHNOLOGY GROUP CO

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399) Family number: 54629236 (US2015030761A) © PatBase

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Title: APPARATUS AND PROCESS FOR PRODUCING

FLUORINATED ORGANOSILICON COMPOUND THIN FILM

Abstract: Source: US2015030761A To provide an apparatus and process capable of continuously forming a fluorinated organosilicon compound thin film having high durability while a substrate is transported. An apparatus for

producing a fluorinated organosilicon compound thin film, which comprises a chamber, a heating container

for heating a deposition material, a plurality of nozzles for supplying the deposition material to a substrate, provided in the chamber and connected to the heating container, and a substrate transport mechanism for transporting the substrate, wherein the plurality of nozzles are ...

Assignee(s):(std): ASAHI GLASS CO LTD

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400) Family number: 54600656 (US2015064446A) © PatBase

Title: SOLUTION-PROCESSABLE TUNGSTEN OXIDE BUFFER LAYERS AND ELECTRONICS COMPRISING SAME

Abstract: Source: US2015064446A The present invention relates to the field of organic electronics, such as OLEDs, OPVs and organic photo detectors. It particularly provides intermediates and materials suitable for manufacturing such organic electronics, to specific manufacturing methods and to specific uses. ...

Assignee(s):(std): NANOGRADE AG

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Teil 2

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1) Family number: 57187209 (KR101421194B) © PatBase

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Title: PURIFICATION METHOD OF MIXED ORGANIC

ELECTROLUMINESCENT MATERIAL

Abstract: Source: KR101421194B The present invention relates to a separation and purification process of an expensive mixed light emitting material discarded after a vacuum deposition step in a manufacturing process of an organic light emitting display (OLED) device. The present invention provides a separation and purification method including the steps of: vacuum depositing a mixed green light emitting material including two types of phosphors for realizing a green color in an OLED device; improving a purity of a crude product recovered from a deposition apparatus to 99.9 percent through a preliminary ...

Assignee(s):(std): SHIN SANG KYU ; SHIN SUNG MATERIALS CO LTD

Assignee(s): SHIN SUNG MATERIALS CO

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2) Family number: 57883531 (KR101465436B) © PatBase

Title: ORGANIC THIN-FILM PHOTOTRANSISTORS USING MUSSEL-INSPIRED POLYDOPAMINE AND METHOD FOR PREPARING THE SAME

Abstract: Source: KR101465436B The present invention relates to preparing a mussel-derived polydopamine thin film and preparing a phototransistor using the polydopamine thin film and, more specifically, to a

method for preparing a polydopamine thin film using oxygen (O2) gas without using air or a chemical oxidizing agent, and a method for preparing an organic thin film phototransistor, using the polydopamine thin film showing exhibiting the characteristics of a p-type semiconductor as an organic semiconductor thin film.

According to the present invention, the method for preparing and coating a ...

Assignee(s):(std): UNIV SUNGKYUNKWAN RES AND BUS

Assignee(s): RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIV ; RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY

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3) Family number: 58868242 (WO15044881A1) © PatBase

Title:

CATALYTIC TRANSPARENT ELECTRODE CONSISTING OF GRAPHENE FILM AND APPLICATION ON METAL NANOPARTICLES AND A METHOD FOR PREPARATION AND RESPECTIVE USAGES

Abstract: Source: WO15044881A1 This application describes a

method for preparation and application of structured films of graphene platelets and metal particles, highly transparent and with catalytic and electrical conduction properties. In particular, the films mentioned above may be advantageously used as counter- electrodes in dye-sensitized solar cells, commonly called DSCs - "Dye-sensitized Solar Cells", as well as in other electrochemical or chemical devices, or in systems whose application also requires high electrical conductivity. Moreover, graphene is a material of great

thermal, chemical ...

Assignee(s):(std): EFACEC ENGENHARIA S A

Assignee(s): EFACEC ENGENHARIA SA

4) Family number: 58729691 (US2015079410A) © PatBase

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Title: CONTROL OF SURFACE CHARGES BY RADICAL SCAVENGERS AND ANTIOXIDANTS AS A PRINCIPLE OF ANTISTATIC POLYMERS PROTECTING ELECTRONIC CIRCUITRY

Abstract: Source: US2015079410A Anti-static polymer compositions for use with electronic devices susceptible to static electricity are provided. The composition includes a polymer and a free radical scavenger additive.

Assignee(s):(std): UNIV NORTHWESTERN

Assignee(s):

NORTHWESTERN UNIV

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5) Family number: 58728405 (US2015076456A) © PatBase

Title: ORGANIC LIGHT-EMITTING DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME

Abstract: Source: US2015076456A An organic light-emitting display device and a method of manufacturing the organic light-emitting display device. The organic light-emitting display device is a dual emission display capable of displaying differing images on either side of

the display, and includes a facing electrode that is selectively deposited in the first area but not in the second area, the selectivity being brought about by a varying an underlying material having differing adhesive forces with the material of the facing electrode. In addition, the underlying materials of the

facing electrode and ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s):

SAMSUNG DISPLAY CO

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6) Family number: 58735209 (WO15036910A1) © PatBase

Title:

OXIME ESTER PHOTOINITIATORS

Abstract: Source: WO15036910A1 Disclosed are oxime ester compounds which have specific benzo (unsaturated 5-membered ring)-carbonyl group and their use as photoinitiators in photopolymerizable compositions, in particular in photoresist formulations for display applications, e.g. liquid crystal display (LCD), organic light emitting diode (OLED) and touch panel.

Assignee(s):(std):

BASF CHINA CO LTD ; BASF SE

7) Family number: 58690223 (US2015072453A) © PatBase

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Title: VAPOR DEPOSITION APPARATUS, VAPOR DEPOSITION

METHOD AND METHOD OF MANUFACTURING ORGANIC LIGHT EMITTING DISPLAY APPARATUS

Abstract: Source: US2015072453A A vapor deposition apparatus for depositing thin films on a substrate includes a supply unit including a plurality of linear supply

members configured to supply at least one gas; and a nozzle unit including a plurality of nozzle members

connected to the plurality of supply members and configured to supply the at least one gas toward the substrate, wherein two adjacent nozzle members of the plurality of nozzle members are connected to at least one common supply member of the plurality of supply members.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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8) Family number: 58631447 (US2015064837A) © PatBase

Title: ORGANIC ELECTRONIC DEVICES WITH MULTIPLE SOLUTION-PROCESSED LAYERS

Abstract: Source: US2015064837A A method of fabricating a tandem organic photosensitive device involves

depositing a first layer of an organic electron donor type material film by solution-processing of the organic electron donor type material dissolved in a first solvent;

depositing a first layer of an organic electron acceptor type material over the first layer of the organic electron donor type material film by a dry deposition process; depositing a conductive layer over the interim stack by a dry deposition process; depositing a second layer of the organic electron donor type material over the ...

Assignee(s):(std): UNIV MICHIGAN

Assignee(s):

THE UNIV OF MICHIGAN

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9) Family number: 58588918 (US2015053932A) © PatBase

Page 642: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC LIGHT EMITTING DIODE PACKAGE AND

METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2015053932A An organic light emitting diode (OLED) package includes a substrate, an OLED die mounted on the substrate and an encapsulation layer encapsulating the OLED die. The OLED package further includes a protecting layer formed on the OLED die. The encapsulation layer has a multi-layered structure and is deposited on the protecting layer. Refractive indexes of a cathode of the OLED die, the protecting layer and the encapsulation layer are gradually decreased in the sequence. A barrier layer for blocking moisture from entering the OLED package is formed on a bottom surface of ...

Assignee(s):(std): YE XIN TECHNOLOGY CONSULTING CO LTD

Assignee(s): YE XIN TECHNOLOGY CONSULTING CO

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10) Family number: 58589894 (US2015056735A) © PatBase

Title: METHOD FOR MANUFACTURING MEMBRANE LAYERS OF ORGANIC SOLAR CELLS BY ROLL TO ROLL COATING

Abstract: Source: US2015056735A A method for manufacturing membrane layers of organic solar cells by roll to roll coating utilizes a roll to roll process for manufacturing an electron transferring layer and an active layer of the organic solar cells is disclosed. The roll to roll process adopted by the method cooperates with a particular solvent and accompanies a parameter control such as temperature and processing time during the sintering and baking steps. The method utilizes a slot-die coating technique in the interim, whereby a membrane layer of the solar cells can be manufactured with a large area ...

Assignee(s):(std):

ATOMIC ENERGY COUNCIL

Assignee(s): ATOMIC ENERGY COUNCIL INST OF NUCLEAR ENERGY RESEARCH ; ATOMIC ENERGY COUNCIL INST OF

NUCLEAR ENERGYRESEARCH

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11) Family number: 58588923 (US2015053938A) © PatBase

Page 645: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC ELECTROLUMINESCENT MATERIALS AND

DEVICES

Abstract: Source: US2015053938A A composition formed of a first mixture of a first compound and a second compound wherein the first compound has different chemical structure than the second compound; the first

compound is capable of functioning as a hole transporting material in an organic light emitting device

at room temperature; the first compound comprises at least one carbazole group; the first compound has a evaporation temperature T1 of 150 to 350 degrees centigrade; the second compound has evaporation temperature T2 of 150 to 350 degrees centigrade; the absolute value of T1-T2 is less than 20 ...

Assignee(s):(std): UNIVERSAL DISPLAY CORP

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12) Family number: 58447941 (US2015037517A) © PatBase

Title: PROCESS FOR MAKING MATERIALS WITH MICRO- OR NANOSTRUCTURED CONDUCTIVE LAYERS

Abstract: Source: US2015037517A Disclosed are methods for making conductive materials. The methods can be used to make transparent, opaque, or reflective electrodes by using the same materials and equipment but varying the processing conditions or amounts of materials used.

The methods can include: (a) providing a substrate comprising a first surface and an opposite second surface, wherein micro- or nanostructures are disposed on at least a portion of the first surface, and wherein the first surface is not pre-conditioned to increase attachment between the micro- or nanostructures and

the substrate; ...

Assignee(s):(std): HAUGER TATE C ; BURIAK JILLIAN M ; AL RAFIA S M IBRAHIM ; ODEH IHAB ; SABIC GLOBAL

TECHNOLOGIES BV ; TEVTIA AMIT K ; ABDELRAHMAN

AHMED I

Assignee(s): AL RAFIA S M

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13) Family number: 58395902 (US2015031157A) © PatBase

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Title: METHOD AND SYSTEM FOR CONTINUOUS ATOMIC

LAYER DEPOSITION

Abstract: Source: US2015031157A A system and method for continuous atomic layer deposition. The system and method includes a housing, a moving bed which passes through the housing, a plurality of precursor gases and associated input ports and the amount of precursor gases, position of the input ports, and relative velocity of the moving bed and carrier gases enabling exhaustion of the precursor gases at available reaction sites. ...

Assignee(s):(std): UCHICAGO ARGONNE LLC

Assignee(s): ENERGY UNITED STATES DEPARTMENT OF

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14) Family number: 58125925 (WO14205193A1) © PatBase

Title: LOW-TEMPERATURE BONDING AND SEALING WITH SPACED NANORODS

Abstract: Source: WO14205193A1 The present disclosure provides improved systems and methods for low-temperature bonding and/or sealing with spaced nanorods. In exemplary embodiments, the present disclosure provides for the use of metallic nanorods to

bond and seal two substrates. The properties of the resulting bond are mechanical strength comparable to adhesives, impermeability comparable to metals and long term stability comparable to metals. The bond may be attached to any flat substrate and superstrate with strong adhesion. In certain embodiments, the bond is

achieved at room temperature with only ...

Assignee(s):(std): UNIV CONNECTICUT

Assignee(s):

OF CONNECTICUT UNIV

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15) Family number: 57990376 (WO14195444A1) © PatBase

Title: METHOD FOR PRODUCING AN OPTICAL MODULE VERFAHREN ZUR HERSTELLUNG EINES OPTISCHEN MODULS

Abstract: Source: WO14195444A1 The invention relates to a method for producing an optical module, comprising the following steps: a) providing a chip having an optical element integrated in the chip, wherein the optical

element has a first electrode and a second electrode, and wherein the chip has a first connection contact for the first electrode and a second connection contact for the second electrode, such that an operating voltage for the optical element can be applied between the first connection contact and the second connection contact,

and wherein the chip has an optically active side, which ...

Assignee(s):(std): WUERTH ELEKTRONIK GMBH AND CO KG

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16) Family number: 57927394 (US2014353602A) © PatBase

Page 652: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: DISPLAY PANEL AND A METHOD OF MANUFACTURING

THE SAME

Abstract: Source: US2014353602A A display panel may include an organic light emitting diode, a first film disposed on the organic light emitting diode and a second film comprising a fluoro polymer and disposed on the first

film.

Assignee(s):(std): SAMSUNG DISPLAY CO LTD

Assignee(s): SAMSUNG DISPLAY CO

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17) Family number: 57834324 (KR20140133113A) © PatBase

Title: INLINE DEPOSITION EQUIPMENT BUILT IN OPEN PATTERN MASK FOR LOW COST MANUFACTURING OF OLED LIGHTING AND WOLED PANEL

Abstract: Source: KR20140133113A The present invention relates to inline deposition equipment to manufacture low price OLED lighting/a WOLED device in bulk. The inline deposition equipment capable of: connecting a few number of process chambers are connected in an inline type; consecutively carrying out the processes of loading a substrate, preprocessing, depositing an organic thin film, depositing a metal thin film, depositing passivation, and unloading; consecutively driving the substrate by a roller; consecutively carrying out downward thin film deposition using a downward linear plasma generating ...

Assignee(s):(std): KIM JIN JUNG

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18) Family number: 57783328 (WO14182589A1) © PatBase

Page 655: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: DISPLAY DEVICE INTEGRATED WITH SOLAR CELL

PANEL AND METHODS FOR PRODUCING THE SAME

Abstract: Source: WO14182589A1 The present invention discloses a solar cell panel integrated on a display unit, a display device integrated with the solar cell panel and methods for producing the same. The solar cell panel

integrated on a display unit according to the present invention comprises a photoelectric material layer with

RGB colors comprising red units, green units and blue units, wherein the red units, green units and blue units are arranged corresponding to pixel arrays in the display unit, and one or two of the red units, green units and blue units are made of the photoelectric active ...

Assignee(s):(std): 3M INNOVATIVE PROPERTIES CO

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19) Family number: 57724059 (WO14178798A1) © PatBase

Title: ENCAPSULATION BARRIER STACK COMPRISING DENDRIMER ENCAPSULATED NANOP ARTICLES

Abstract: Source: WO14178798A1 Disclosed is an encapsulation barrier stack, capable of encapsulating a moisture and/or oxygen sensitive article and comprising a multilayer film, wherein the multilayer film comprises: - one or more barrier layer(s) having low moisture

and/or oxygen permeability, and - one or more sealing layer(s) arranged to be in contact with a surface of the at least one barrier layer, thereby covering defects present in the barrier layer, wherein the one or more sealing layer(s) comprise(s) a plurality of dendrimer encapsulated nanoparticles, the nanoparticles being

reactive in that ...

Assignee(s):(std): TERA BARRIER FILMS PTE LTD

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20) Family number: 57696511 (DE102013104301A1) © PatBase

Page 658: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ANZEIGEVORRICHTUNG SOWIE VERFAHREN ZUR

HERSTELLUNG EINER ANZEIGEVORRICHTUNG DISPLAY DEVICE AND METHOD FOR MANUFACTURING A DISPLAY DEVICE (Machine translation)

Abstract: Source: DE102013104301A1 Anzeigevorrichtung (1) und Verfahren zum Herstellen insbesondere

Werbeplakat oder Poster, mit einer Sichtseite und einer dieser gegenueberliegenden Rueckseite. Die

Anzeigevorrichtung (1) weist eine Maskenschicht und eine Bildschicht auf. Die Maskenschicht ist in einem ersten Bereich in eine Vielzahl von ersten Zonen und mindestens eine zweite Zone oder in eine Vielzahl von zweiten Zonen und mindestens eine erste Zone unterteilt. Die Maskenschicht besitzt in den ersten Zonen oder der mindestens einen ersten Zone einen wesentlich hoeheren Transmissionsgrad als in der ...

Assignee(s):(std): OVD KINEGRAM AG

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21) Family number: 57712131 (JP2014214379A) © PatBase

Title: EVAPORATION EQUIPMENT AND EVAPORATION METHOD FOR MASS PRODUCTION

Abstract: Source: JP2014214379A PROBLEM TO BE SOLVED: To provide evaporation equipment and an evaporation method for mass production that, when an organic substance is sublimated from many evaporation sources and vacuum-deposited on a substrate having a

large area, enable wasteful use of organic material to be reduced by reducing distance between the evaporation sources and the substrate thereby simplifying the structure of the evaporation equipment and by improving uniformity of thin film thickness at both ends of the substrate. SOLUTION: The evaporation

equipment for mass production is equipment ...

Assignee(s):(std): GJM CO LTD

Assignee(s):

SET TEMIN CORP ; GJM CO

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22) Family number: 57700201 (US2014319488A) © PatBase

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Title: THIN FILM FORMATION FOR DEVICE SENSITIVE TO

ENVIRONMENT

Abstract: Source: US2014319488A Embodiments relate to forming a barrier layer on a device before performing radical-assisted atomic layer deposition (RA-ALD) using ozone to form oxygen radicals that function as a reactant precursor for depositing a blanket deposition layer over the device. Before exposing the substrate to ozone or oxygen radicals generated from ozone or oxygen radicals with hydroxyl radicals (generated from ozone mixed with hydrogen-containing gas such as hydrogen or ammonia), the barrier layer is formed on the substrate by exposing the device formed on a substrate to radicals of ...

Assignee(s):(std): VEECO ALD INC

Assignee(s): EMD MILLIPORE CORP

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23) Family number: 57611157 (WO14171755A1) © PatBase

Title: FULLERENE DERIVATIVE, ORGANIC SOLAR CELL USING SAME, AND MANUFACTURING METHOD THEREOF

Abstract: Source: WO14171755A1 The present specification relates to a fullerene derivative, an organic solar cell containing the same, and a manufacturing method thereof.

Assignee(s):(std):

LG CHEMICAL LTD

Assignee(s):

LG CHEM LTD

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24) Family number: 57551037 (US2014353579A) © PatBase

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Title: BLUE LIGHT-EMITTING DIODES BASED ON ZINC

SELENIDE QUANTUM DOTS

Abstract: Source: US2014353579A The present invention relates to colloidal quantum dots, to a process for producing such colloidal quantum dots, to the use thereof and to optoelectronic components comprising colloidal

quantum dots.

Assignee(s):(std): FRAUNHOFER GES FORSCHUNG ; FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E V ; KOREA ELECTRONICS TECHNOLOGY

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV ; FRAUNHOFER GES ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV ; FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER

ANGEWANDTEN FORSCHUNG E V ; KOREA ELECTRONICS TECHNOLOGY INSTITUTE ; KOREA

ELECTRONICS TECHNOLOGY INST

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25) Family number: 57480966 (US2014295196A) © PatBase

Title: COMPOSITE FILM AND MANUFACTURING METHOD OF THE SAME

Abstract: Source: US2014295196A A composite film and a manufacturing method of the same are provided. The composite film includes an organic multilayer film and two inorganic gas barrier layers. The organic multilayer film comprises a hydrophobic polymer layer and two

hydrophilic polymer layers formed on two opposite surfaces of the hydrophobic polymer layer, respectively. The two inorganic gas barrier layers are formed on the two hydrophilic polymer layers, respectively.

Assignee(s):(std): IND TECH RES INST

Assignee(s): INDUSTRIAL TECHNOLOGY RESEARCH INST

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26) Family number: 57482140 (US2014291650A) © PatBase

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Title: ORGANIC DEVICE AND MANUFACTURING METHOD

THEREOF

Abstract: Source: US2014291650A A method for manufacturing an organic device includes the steps of applying a photoresist onto at least an active first region arranged on a substrate of the organic device, and removing the

photoresist from the substrate in a second region adjacent to the active first region. Additionally, the

method includes the steps of applying a passivation layer onto the first and second regions and removing the photoresist and the passivation layer in the active first region.

Assignee(s):(std): FRAUNHOFER GES FORSCHUNG ; FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E V

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER

ANGEWANDTEN FORSCHUNG EV

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27) Family number: 57440048 (US2014284580A) © PatBase

Title: ELECTRON TRANSPORTING COMPOUNDS AND ORGANIC ELECTROLUMINESCENT DEVICES USING THE SAME

Abstract: Source: US2014284580A Disclosed is a novel compound of Formula 1 and an organic electroluminescent device using the same. In Formula 1, X and Y independently represents a hydrogen, an

aromatic or a hetero aromatic hydrocarbon having C5 to C10 carbons; X and Y may be the same or different; Ar1 to Ar2 each represent a hydrogen, an unsubstituted or substituted aromatic hydrocarbon having C4 to C12 carbons, or an unsubstituted or substituted condensed polycyclic aromatic hydrocarbon having C4 to C12

carbons; Ar1 to Ar2 can form a fused aromatic ring system with the adjacent aromatic ...

Assignee(s):(std): E RAY OPTOELECTRONICS TECHONOLOGY CO LTD

Assignee(s): E RAY OPTOELECTRONICS TECHONOLOGY CO

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28) Family number: 57459356 (WO14146534A1) © PatBase

Page 670: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: TRANSPARENT CONDUCTIVE INK COMPOSITED BY

CARBON NANO TUBES AND POLYMERS, AND METHOD FOR PREPARING SAME

Abstract: Source: WO14146534A1 The present invention relates to a transparent conductive ink composited by carbon nano tubes and polymers, and a method for preparing

same. The conductive ink consists of modified carbon nano tubes, a conductive polymer, a water-soluble

polymer co-solvent, a polymer modification assistant, a surfactant, and deionized water. By means of a blending process technology for solution, the uniform dispersion of the nano tubes and the conductive polymer solution is achieved, and the ink prepared has good stability and re-dispersity. The method can prepare a fine electrode ...

Assignee(s):(std): BEIJING AGLAIA TECHNOLOGY AND DEV CO LTD ; GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS

CO LTD ; BEIJING AGLAIA TECHNOLOGY DEV CO LTD

Assignee(s): BEIJING AGLAIA TECHNOLOGY DEVELOPMENT CO ; GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS CO ; BEIJING AGLAIA TECHNOLOGY AND DEVELOPMENT CO ; BEIJING AGLAIA TECHNOLOGY AND DEVELOPMENT CO LTD ; PHOTOELECTRIC MATERIAL CO LTD GUANGDONG AGLAIA ; BEIJING AGLAIA TECHNOLOGY DEVELOPMENT CO LTD

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29) Family number: 57485098 (KR20140115484A) © PatBase

Title: A APPARATUS FOR ALIGNING SUBSTRATES IN OLED DEPOSITION SYSTEM

Abstract: Source: KR20140115484A The present invention relates to an apparatus for aligning a substrate, capable of stably aligning a substrate with a high degree of precision in OLED deposition. The apparatus for aligning a substrate comprises a shuttle allowing a substrate and a plate to be sequentially mounted on an upper surface thereof and transferred when a process is performed within a chamber, a substrate holder installed in the plate such that the substrate holder ascends and descends and having a stop portion provided in a lower end thereof to allow the substrate to be mounted thereon, a ...

Assignee(s):(std):

SUNIC SYSTEM LTD

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30) Family number: 57424409 (US2014264293A) © PatBase

Page 673: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: COATED ARTICLE AND/OR DEVICE WITH OPTICAL OUT-

COUPLING LAYER STACK (OCLS) INCLUDING VACUUM DEPOSITED INDEX MATCH LAYER OVER SCATTERING MATRIX, AND/OR ASSOCIATED METHODS

Abstract: Source: US2014264293A Certain example embodiments relate to light emitting diode (e.g., OLED and/or PLED) inclusive devices, and/or methods of making the same. Certain example embodiments incorporate an optical out-coupling layer stack (OCLS) structure that includes a vacuum deposited index matching layer (imL) provided over an organo-metallic scattering matrix layer. The imL may be a silicon-inclusive layer and may include, for example, vacuum deposited SiOxNy. The OCLS including scattering micro-particles, the imL, and the anode may be designed such that the device extraction efficiency is ...

Assignee(s):(std): GUARDIAN IND

Assignee(s): GUARDIAN IND CORP

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31) Family number: 57425015 (US2014264297A) © PatBase

Title: THIN FILM ENCAPSULATION-THIN ULTRA HIGH BARRIER LAYER FOR OLED APPLICATION

Abstract: Source: US2014264297A A method and apparatus for depositing a multilayer barrier structure is disclosed

herein. In one embodiment, a thin barrier layer formed over an organic semiconductor includes a non-conformal organic layer, an inorganic layer formed over

the non-conformal organic layer, a metallic layer formed over the inorganic layer and a second organic layer formed over the metallic layer. In another embodiment, a method of depositing a barrier layer includes forming an organic semiconductor device over the exposed surface of a substrate, depositing an inorganic layer using CVD, ...

Assignee(s):(std): APPLIED MATERIALS INC

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32) Family number: 57358555 (US2014256081A) © PatBase

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Title: METHODS FOR PRODUCING THIN FILM CHARGE

SELECTIVE TRANSPORT LAYERS

Abstract: Source: US2014256081A Methods for producing thin film charge selective transport layers are provided. In one embodiment, a method for forming a thin film charge selective transport layer comprises: providing a

precursor solution comprising a metal containing reactive precursor material dissolved into a complexing

solvent; depositing the precursor solution onto a surface of a substrate to form a film; and forming a charge selective transport layer on the substrate by annealing the film.

Assignee(s):(std): ALLIANCE SUSTAINABLE ENERGY

Assignee(s): ENERGY UNITED STATES DEPARTMENT OF ; ALLIANCE

FOR SUSTAINABLE ENERGY LLC

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33) Family number: 53682351 (GB2516607A) © PatBase

Title: ORGANIC ELECTRONIC DEVICE

Abstract: Source: GB2516607A An organic electronic device which comprises a metal anode 4 and a hole injection layer 6, said device further comprising a self-assembled monolayer (SAM) 22 between the metal anode 4 and the hole injection layer 6, the SAM 22 comprising a compound which has a moiety which is capable of adsorbing onto the surface of the metal anode 4 and a hydrophilic moiety. Also disclosed is a method of forming said device. Further disclosed is a material which can form a SAM which can passivate a metal anode in an organic electronic device and prevent oxidation of said anode, where the ...

Assignee(s):(std):

CAMBRIDGE DISPLAY TECH

Assignee(s): CAMBRIDGE DISPLAY TECHNOLOGY LIMITED ; CAMBRIDGE DISPLAY TECHNOLOGY LTD

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34) Family number: 57359280 (US2014251799A) © PatBase

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Title: FILM DEPOSITION APPARATUS WITH LOW PLASMA

DAMAGE AND LOW PROCESSING TEMPERATURE

Abstract: Source: US2014251799A A deposition system includes a magnetron sputter deposition source that includes a backing frame that includes a window and a closed loop around the window. The backing frame includes inside surfaces towards the window, one or more sputtering targets mounted on inside surfaces of the backing frame, and one or more magnets mounted on outside surfaces of the backing frame. The one or more sputtering targets include sputtering surfaces that define internal walls of the window. The one or more magnets can produce a magnetic field near the one or more sputtering surfaces. A ...

Assignee(s):(std): AREESYS TECHNOLOGIES INC

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35) Family number: 56953603 (US2014202527A) © PatBase

Title: SOLAR CELL AND METHOD OF MANUFACTURING THE SOLAR CELL

Abstract: Source: US2014202527A A solar cell is disclosed. The solar cell includes a transparent conductive layer formed on a substrate, microstructures protruding vertically aslant from a surface of the transparent conductive layer, an electron transport layer configured

to cover the microstructures and formed of an electron transport metal oxide, a light absorber adhered to inner pores and a surface of the electron transport layer, a hole transport layer configured to cover the surface of the electron transport layer and formed of a hole transport material, and an electrode formed on the hole

...

Assignee(s):(std): UNIV SUNGKYUNKWAN RES AND BUS

Assignee(s):

RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIV ; RESEARCH AND BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY

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36) Family number: 53178470 (GB2509497A) © PatBase

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Title: OLED DISPLAYS FABRICATED BY INKJET PRINTING

Abstract: Source: GB2509497A An inkjet deposition head is controlled so as to deposit OLED device layers with different thicknesses using separate groups of nozzle arrays and different drive waveforms for each nozzle array. Varying the duration of the driving pulse voltage of the nozzle allows the size of the deposited drops to be controlled. This allows display subpixels with differing optical cavity lengths to be fabricated by varying the thicknesses of deposited electroluminescent or carrier injection layers. ...

Assignee(s):(std): CAMBRIDGE DISPLAY TECH

Assignee(s): CAMBRIDGE DISPLAY TECHNOLOGY LIMITED ; CAMBRIDGE DISPLAY TECHNOLOGY LTD

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37) Family number: 56827951 (WO14102520A1) © PatBase

Title: METHOD FOR MANUFACTURING ALL-SOLID-STATE BATTERIES IN A MULTILAYER STRUCTURE

Abstract: Source: WO14102520A1 The invention relates to a method for manufacturing all-solid-state batteries, said batteries including at least one layer containing anode materials ("anode layer"), at least one layer containing solid electrolyte materials ("electrolyte layer"), and at

least one layer containing cathode materials ("cathode layer"), each of said three layers being deposited by electrophoresis, method in which two layers obtained by electrophoresis are stacked surface-to-surface in order to obtain a multi-layer, all-solid-state battery consisting of an assembly of a plurality of ...

Assignee(s):(std): I TEN

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38) Family number: 56881997 (KR20140086450A) © PatBase

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Title: DEPOSITION SYSTEM FOR MANUFACTURING OLED

Abstract: Source: KR20140086450A Disclosed is a deposition system to manufacture OLED. According to an embodiment of the present invention, the deposition system to manufacture OLED includes: a carrier which includes a chuck where a substrate is chucked and attached to, and a push-pin module which pushes the substrate attached to the chuck to detach the substrate from the chuck; and a push-pin module driving unit which is at least partially arranged on the upper part of the carrier and drives the push-pin module during the process of detaching the substrate. ...

Assignee(s):(std): SFA ENGINEERING CORP

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39) Family number: 56881999 (KR20140086451A) © PatBase

Title: DEPOSITION SYSTEM FOR MANUFACTURING OLED

Abstract: Source: KR20140086451A Disclosed is a deposition system for manufacturing an OLED. The deposition system for manufacturing an OLED according to an embodiment of the present invention comprises: a carrier which includes a chuck to which a substrate is chucked and attached; and a stage for supporting the substrate which is arranged on the lower side of the carrier and includes a plurality of substrate support pin units which minimize the sagging of the substrate and support the substrate on a lower side thereof. ...

Assignee(s):(std): SFA ENGINEERING CORP

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40) Family number: 56882000 (KR20140086452A) © PatBase

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Title: DEPOSITION SYSTEM FOR MANUFACTURING OLED

Abstract: Source: KR20140086452A Disclosed is a deposition system used to manufacture OLEDs. According to an embodiment of the present invention, the deposition system used to manufacture OLEDs includes a carrier including a chuck where a substrate is chucked and attached to; and a substrate supporting stage arranged on the lower area of the carrier. The substrate supporting stage includes a plurality of substrate supporting pin units which support the lower side of the substrate to prevent the sagging of the substrate; and a plurality of substrate pressing units which are arranged near the substrate ...

Assignee(s):(std): SFA ENGINEERING CORP

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41) Family number: 56830055 (WO14104979A1) © PatBase

Title: P-TYPE SEMICONDUCTING POLYMERS AND RELATED METHODS

Abstract: Source: WO14104979A1 There is provided p-type organic polymers of general formula I. The polymers may be useful as semi-conducting material. Thus, thin films and devices comprising such polymers are also provided.

Assignee(s):(std): AGENCY SCIENCE TECH AND RES

Assignee(s): AGENCY FOR SCIENCE TECHNOLOGY AND RESEARCH

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42) Family number: 56830051 (WO14104976A1) © PatBase

Title: ORGANIC ELECTRONIC DEVICES

Abstract: Source: WO14104976A1 The present invention provides a product and manufacturing method for an organic electronic device. The electronic device comprises a first conductive layer and a second conductive layer, an organic layer disposed between said first and second conductive layer and an amphiphilic layer disposed between said organic layer and the second conductive layer. ...

Assignee(s):(std):

AGENCY SCIENCE TECH AND RES

Assignee(s): AGENCY FOR SCIENCE TECHNOLOGY AND RESEARCH

43) Family number: 56647214 (KR101403763B) © PatBase

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Title: MEARSUREMENT UNIT OF FILM THICKNESS PER UNIT TIME FOR OLED IN-LINE DEPOSITION SYSTEM

Abstract: Source: KR101403763B An objective of the present invention is to provide a film thickness measuring apparatus capable of measuring the film thicknesses of a plurality of evaporation sources disposed at each deposition chamber at one time by moving a sampling substrate using a propelling force of a tray in an OLED in-line deposition system in which a plurality of deposition chambers are arranged in a row. According to the present invention, in the OLED in-line deposition system in which a plurality of deposition chambers are arranged in a row, in order to measure the film thickness for an ...

Assignee(s):(std): YAS CO LTD

Assignee(s): YAS CO

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44) Family number: 56775644 (WO14094952A1) © PatBase

Title: INORGANIC BARRIER LAYERS ANORGANISCHE SPERRSCHICHTEN

Abstract: Source: WO14094952A1 The present invention relates to electroluminescent devices containing materials having a wide band gap and to the use thereof. Die vorliegende Erfindung betrifft

Elektrolumineszenzvorrichtungen enthaltend Materialien mit einer grossen Bandluecke sowie deren Verwendung.

Assignee(s):(std): MERCK PATENT GMBH

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45) Family number: 56729812 (WO14089708A1) © PatBase

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Title: CONDUCTING NANOCOMPOSITE MATRIX AND USES

THEREOF

Abstract: Source: WO14089708A1 The present disclosure relates to conductive polymers referred to as nanocomposite conducting matrix (NCM). The present NCMs may be used, for example, in conductive coatings such as electromagnetic shielding or seed layer for electrochemical deposition, in ink-jet printing as a conductive ink for conventional and 3D printings, in wearable electronics, in electrochromic devices, in electronic interconnects and electronic devices such as organic and inorganic transistors and diodes, displays, organic and inorganic photovoltaics, organic and inorganic light emitting diodes, ...

Assignee(s):(std): P P HOLDINGS INC SA

Assignee(s): SAPP HOLDINGS INC

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46) Family number: 56726496 (US2014166986A) © PatBase

Title: SYSTEM AND METHOD FOR MATCHING ELECTRODE RESISTANCES IN OLED LIGHT PANELS

Abstract: Source: US2014166986A Provided are an OLED device and a method of manufacturing the OLED device that may provide improved luminance uniformity. The disclosed OLED may have a first electrode that has a first sheet resistance Rs, and a second electrode that has a second sheet resistance, wherein the second sheet resistance may be in the range of 0.3Rs-1.3Rs. In addition, the disclosed OLED may have a plurality of equal potential difference between points on a first electrode and a second electrode. The equal potential difference may be provided by a gradient resistance formed on at least one of ...

Assignee(s):(std):

MA RUIQING ; PANG HUIQING

Assignee(s): UNIVERSAL DISPLAY CORP

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47) Family number: 56590141 (WO14083328A1) © PatBase

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Title: ORGANIC SEMICONDUCTOR FORMULATIONS

Abstract: Source: WO14083328A1 The present invention relates to a process for preparing novel organic semiconductor (OSC) formulations comprising a polycrystalline small molecule organic semiconductor, a semiconducting polymer binder and a multi-component solvent blend. The present invention also relates to novel formulations obtained by this process, to their use as semiconducting inks in the fabrication of organic electronic devices, especially organic thin film transistors (OTFTs). ...

Assignee(s):(std): SMARTKEM LTD

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48) Family number: 56548921 (WO14082002A2) © PatBase

Title: USE OF INVERSE QUASI-EPITAXY TO MODIFY ORDER DURING POST-DEPOSITION PROCESSING OR ORGANIC PHOTOVOLTAICS

Abstract: Source: WO14082002A2 Disclosed herein are methods for fabricating an organic photovoltaic device comprising depositing an amorphous organic layer and a crystalline organic layer over a first electrode, wherein the amorphous organic layer and the crystalline organic layer contact one another at an interface; annealing the amorphous organic layer and the crystalline organic layer for a time sufficient to induce at least partial crystallinity in the amorphous organic layer; and depositing a second electrode over the amorphous organic layer and the crystalline organic layer. In the methods and ...

Assignee(s):(std):

UNIV MICHIGAN

Assignee(s): THE UNIV OF MICHIGAN

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49) Family number: 56479798 (WO14076018A1) © PatBase

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Title: ELECTRICAL CONNECTION OF AN OLED DEVICE

Abstract: Source: WO14076018A1 The present invention concerns the production of an OLED organic light emitting diode device, the method comprising the following sequences of steps: a step of forming a stack of layers (200) on a substrate (100); said stack comprising, successively and in the following order, a first electrode (210), an organic layer (220) and a second electrode (230); a step of putting in place a cover (400); a step of forming a connection pad (500); characterised in that the method also comprises: a step of fixing a first end of at least one elongate electrical connection member (600) ...

Assignee(s):(std): ASTRON FIAMM SAFETY

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50) Family number: 56427813 (WO14072944A1) © PatBase

Title: NOVEL METHOD FOR MANUFACTURING ORGANIC ELECTRONIC DEVICES

Abstract: Source: WO14072944A1 The present invention relates to a method for manufacturing organic electronic devices including a dipyrannylidene film as an anodic interface layer, said method being carried out in a vacuum and without any exposure to air. The invention also relates to organic devices resulting from said method, more specifically to organic solar cells (OSC). ...

Assignee(s):(std): CENTRE NAT RECH SCIENT

Assignee(s): CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE

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51) Family number: 55354253 (KR101341850B) © PatBase

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Title: SYSTEM FOR PLASMA DRY CLEANING OF ORGANIC

DEPOSITION MASK

Abstract: Source: KR101341850B The present invention is provided to increase OLED production efficiency through a system for plasma dry cleaning of an organic deposition mask comprising a dry cleaning process which cleans a mask and moves the cleaned mask to an organic deposition chamber and a metal deposition chamber in a vacuum environment, thereby solving a problem that an unnecessary time is required for removing the vacuum in the deposition chamber for cleaning the mask and for setting the deposition chamber to the vacuum environment for reusing the cleaned mask and a problem that the cleaning ...

Assignee(s):(std): SUNIC SYSTEM LTD

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52) Family number: 56266775 (WO14062135A1) © PatBase

Title: ENCAPSULATION BARRIER STACK

Abstract:

Source: WO14062135A1 Disclosed is an encapsulation barrier stack, capable of encapsulating a moisture and/or oxygen sensitive article and comprising a film layer with at least one layer, wherein the film layer comprises: -one or more nanoparticle sealing layer(s) arranged to be in contact with surface of the at least

one substrate, wherein the substrate is not a barrier layer, wherein the one or more nanoparticle sealing layer(s) comprise(s) a plurality of encapsulated nanoparticles, the nanoparticles being reactive in that they are capable of interacting with moisture and/or oxygen to ...

Assignee(s):(std): TERA BARRIER FILMS PTE LTD

Assignee(s): RAMADAS SENTHIL KUMAR ; SHANMUGAVEL SARAVAN

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53) Family number: 57793112 (WO14180491A1) © PatBase

Title:

ANALYSIS DEVICE AND ANALYSIS METHOD FOR DETECTING CHARACTERISTICS OF A MATERIAL IN A COMPONENT SAMPLE UNTERSUCHUNGSVORRICHTUNG UND -VERFAHREN ZUR ERFASSUNG VON EIGENSCHAFTEN EINES MATERIALS IN EINER BAUELEMENT-PROBE

Abstract: Source: WO14180491A1 The invention relates to an analysis device (100) for detecting characteristics of at least one material contained in at least one component sample (1), said device comprising: a measuring device (10) which is used to detect optical and/or electrical measured values in the component sample (1); a simulation and evaluation device (20), designed to adapt a simulation function, which contains the characteristics of the component sample (1) as

parameters, to the optical and/or electrical measured values; and an output device (30), designed to output

the material ...

Assignee(s):(std): CREAPHYS GMBH

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54) Family number: 56035644 (US2014087497A) © PatBase

Title: BARRIER FILM FOR ELECTRONIC DEVICES AND SUBSTRATES

Abstract: Source: US2014087497A Methods for forming a coating over a surface are disclosed. A method includes directing a first source of barrier film material toward a substrate in a first direction at an angle ? relative to the substrate, wherein ? is greater than about 0 degrees

and less than about 85 degrees. Additionally, a method of depositing a barrier film over a substrate includes directing a plurality of N sources of barrier film material toward a substrate, each source being directed at an angle ?N relative to the substrate, wherein for each ?N, ? is greater than about 0 degrees and less ...

Assignee(s):(std): UNIV PRINCETON ; UNIVERSAL DISPLAY CORP

Assignee(s): TRUSTEES OF PRINCETON UNIV

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55) Family number: 55715108 (WO14023541A1) © PatBase

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Title: BATTERY WITH A METALLIC HOUSING, METHOD FOR

PRODUCING A COATING FOR METALLIC BATTERY HOUSINGS AND MOTOR VEHICLE BATTERIE MIT EINEM METALLISCHEN GEHAEUSE, VERFAHREN ZUR HERSTELLUNG EINER BESCHICHTUNG VON METALLISCHEN BATTERIEGEHAEUSEN UND KRAFTFAHRZEUG

Abstract: Source: WO14023541A1 A battery with a metallic

housing is described, wherein the battery contains a multiplicity of battery cells (10, 18), in particular lithium-ion battery cells, and the outer surface of the metallic housing has an insulating coating, which is applied in one or more layers and is solidly connected to the metallic outer surface of the battery. Furthermore, a method for producing a coating for metallic battery housings is proposed, wherein the coating is performed by means of at least one of the following methods: pneumatic atomization of a paint,

dip coating, roll, tampon ...

Assignee(s):(std): BOSCH GMBH ROBERT ; SAMSUNG SDI CO ; SAMSUNG SDI CO LTD

Assignee(s): ROBERT BOSCH GMBH

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56) Family number: 55667454 (WO14015288A1) © PatBase

Title: MULTIJUNCTION ORGANIC PHOTOVOLTAICS INCORPORATING SOLUTION AND VACUUM DEPOSITED ACTIVE LAYERS

Abstract: Source: WO14015288A1 There is disclosed an organic photovoltaic device comprising at least one first subcell comprising at least one first small molecular weight material deposited by solution processing, and at least one second subcell comprising a weight at least one second small molecular material deposited by vacuum evaporation. Also disclosed herein is a method for preparing an organic photovoltaic device comprising at least one first subcell comprising at least one first small molecular weight material and at least one second subcell comprising at least one second small molecular weight ...

Assignee(s):(std): FORREST STEPHEN R ; LASSITER BRIAN ; UNIV

MICHIGAN

Assignee(s):

THE UNIV OF MICHIGAN

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57) Family number: 55306591 (DE102012209322A1) © PatBase

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Title: SONNENKOLLEKTOR UND VERFAHREN ZUR

HERSTELLUNG DESSELBEN SOLAR COLLECTOR INSTALLED IN HOUSE, FOR RECOVERING E.G. THERMAL ENERGY FROM SOLAR RADIATION, HAS HEAT EXCHANGER COUPLED WITH THERMAL GENERATOR, TO TRANSMIT CONVERTED THERMAL AND ELECTRICAL ENERGIES TO MEDIUM CIRCULATING IN EXCHANGER

Abstract: Source: DE102012209322A1 Ein Sonnenkollektor

umfasst einen Thermogenerator auf einem Waermetauscher. Der als Polymerelektronik ausgefuehrte Waermetauscher ist ausgebildet, um einen ersten Teil einer ersten Strahlungsenergie einer auf einer ersten Seite einstrahlenden Strahlung in elektrische Energie zu wandeln und um einen zweiten Teil der Strahlungsenergie als thermische Energie auf einer der ersten Seite gegenueberliegenden zweiten Seite bereitzustellen. Der Waermetauscher ist mit dem Thermogenerator auf der zweiten Seite gekoppelt und

ausgebildet, um zumindest einen Teil der thermischen

...

Assignee(s):(std): FRAUNHOFER GES FORSCHUNG

Assignee(s): FRAUNHOFER GES ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

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58) Family number: 55310398 (US2015108448A) © PatBase

Title: ORGANIC ELECTRONIC MATERIAL

Abstract: Source: US2015108448A The present invention discloses an "organic light-emitting device (OLED)", comprising an anode, a cathode, and one or more organic layers, wherein the said organic layer contains at least one compound having the formula (I), and the said OLED has the advantages of excellent light-emitting efficiency, excellent color purity and long lifetime. ...

Assignee(s):(std): BEIJING AGLAIA TECHNOLOGY AND DEV CO LTD ; BEIJING AGLAIA TECHNOLOGY DEV CO LTD ; GUANGDONG AGLAIA OPTOECTRONIC MATERIALS CO LTD ; BOE TECHNOLOGY GROUP CO LTD ; GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS CO LTD

Assignee(s): BOE TECHNOLOGY GROUP CO ; GUANGDONG AGLAIA OPTOELECTRONIC MATERIALS CO ; BEIJING AGLAIA

TECHNOLOGY DEVELOPMENT CO LTD ; GUANGDONG AGLAIA OPTOECTRONIC MATERIALS CO ; BEIJING AGLAIA TECHNOLOGY DEVELOPMENT CO ; BEIJING AGLAIA TECHNOLOGY AND DEVELOPMENT CO

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59) Family number: 55203996 (US2015079351A) © PatBase

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Title: COMPOSITION SUITABLE FOR USE AS A RELEASE-

OPTIMIZED MATERIAL FOR NANOIMPRINT PROCESSES AND USES THEREOF

Abstract: Source: US2015079351A The present invention relates to a composition suitable for use as a release-optimized material for nanoimprint processes, process of

production and uses thereof.

Assignee(s):(std): MICRO RESIST TECHNOLOGY GES F CHEMISCHE MATERIALIEN SPEZIELLER PHOTORESISTSYSTEME MBH

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60) Family number: 55199277 (US2013313534A) © PatBase

Title: METHOD OF PREPARING MOLYBDENUM OXIDE FILMS

Abstract:

Source: US2013313534A Present invention relates to methods of preparing molybdenum oxide inks and molybdenum oxide films, and use of the molybdenum oxide films as hole-transporting layers in optoelectronic devices. The ink for forming a hybrid molybdenum (VI) oxide (MoO3) film on a substrate comprises an

ammonium molybdate, at least one inorganic salt different from ammonium molybdate, and a solvent or a solvent mixture.

Assignee(s):(std): AGENCY SCIENCE TECH AND RES

Assignee(s):

AGENCY FOR SCIENCE TECHNOLOGY AND RESEARCH

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61) Family number: 55155642 (US2015105560A) © PatBase

Title:

FORMULATION COMPRISING IONIC ORGANIC COMPOUNDS FOR USE IN ELECTRON TRANSPORT LAYERS

Abstract: Source: US2015105560A The invention relates to formulations comprising ionic organic compounds for use in electron transport layers or electron collecting layers of organic electronic (OE) devices, more specifically in organic photovoltaic (OPV) devices, to electron transport layers comprising or being made through the use of such formulations, and to OE and OPV devices comprising such formulations or electron transport layers. ...

Assignee(s):(std):

MERCK PATENT GMBH

62) Family number: 55025167 (US2013285681A) © PatBase

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Title: SMART PACKAGE AND MONITORING SYSTEM WITH

INDICATOR AND METHOD OF MAKING SAME

Abstract: Source: US2013285681A There is provided a smart package and monitoring system having a status indicator and a method of making the same. The smart package includes an electronic sensor monitoring tag

having re-usable electronic circuitry and power source along with a conductive grid printed on a thin flexible

substrate and connected to the tag so the tag and grid are in electrical continuity to form a monitoring device. The conductive grid is aligned with an opening of the smart package. The smart package can also include an optical ink indicator configured to display the status of the ...

Assignee(s):(std): BROTZEL DEAN ; INTELLIGENT DEVICES INC ; PETERSEN MICHAEL ; WILSON ALLAN

Assignee(s):

PETERSEN MICHAEL7-65 WHITEMARL DRIVEROCKCLIFFE PARKO1K1L 8J9CA ; WILSON ALLAN38 MACKINNON ROADOTTAWAO1K1M 0G3CA ; INTELLIGENT DEVICES INCTHE GROVE21 PINE STREETBELLEVILLEWEST INDIESST. MICHAELBB ; BROTZEL DEAN1502 AMBASSADOR DR.OTTAWAO1K1J 1G5CA

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63) Family number: 55005531 (US2013280833A) © PatBase

Title: REACTOR FOR ATOMIC LAYER DEPOSITION (ALD), APPLICATION TO ENCAPSULATION OF AN OLED DEVICE BY DEPOSITION OF A TRANSPARENT AL2O3 FILM

Abstract: Source: US2013280833A The present invention relates to a reactor for atomic layer deposition (ALD), comprising a reaction chamber comprising a platen and bounded internally by surfaces; at least one inlet orifice and at least one outlet orifice, each emerging from one of the surfaces bounding the chamber. The reactor furthermore comprises, within it, at least one wall apertured with at least one orifice, the apertured wall extending around the platen and over at least most of the height between the lower surface and the upper surface, at least one orifice in at least one of the apertured ...

Assignee(s):(std):

AUX EN ALTERNATIVES COMMISSARIAT A L EN ATOMIQUE ET ; COMMISSARIAT ENERGIE ATOMIQUE

Assignee(s): COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX

ENERGIESALTERNATIVES ; AUX ENERGIES ALTERNATIVES COMMISSARIAT A L ENERGIE

ATOMIQUE ET ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

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64) Family number: 54972891 (US2013274473A) © PatBase

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Title: PLATINUM(II) COMPLEXES FOR OLED APPLICATIONS

Abstract: Source: US2013274473A The current invention relates to novel platinum(II) based organometallic materials. These materials show high emission quantum efficiencies and low self-quenching constant. Also provided are high efficiency, green to orange emitting organic light-emitting diode (OLED) that are fabricated using platinum(II) based organometallic materials as the light-emitting material. The organometallic materials of the invention are soluble in common solvents; therefore, solution process methods such as spin coating and printing can be used for device fabrication. The devices fabricated ...

Assignee(s):(std): UNIV HONG KONG

Assignee(s): VERSITECH LTD ; OF HONG KONG UNIV

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65) Family number: 54806086 (WO13144138A2) © PatBase

Title: METHOD FOR PRODUCING AN ELECTRIC COMPONENT, CODEPOSITION SYSTEM, AND ELECTRIC COMPONENT VERFAHREN ZUR HERSTELLUNG EINES ELEKTRISCHEN BAUTEILS, KODEPOSITIONSANLAGE UND ELEKTRISCHES BAUTEIL

Abstract: Source: WO13144138A2 The invention relates to a method for producing an electric component (70, 80,

81, 82, 83) that has at least one substrate (6) and at least one coating (4) which is arranged on the substrate (6) and which is made of at least two different materials (1, 2) that are deposited on the substrate (6) in a common deposition process. The invention is characterized in that thread-like structures

(5) of a second deposited material (2) are formed in a first deposited material (1) in the course of the deposition process. One or more nucleation parameters of the second material (2) ...

Assignee(s):(std):

UNIV BRAUNSCHWEIG TECH ; UNIV RUPRECHT KARLS HEIDELBERG

Assignee(s): RUPRECHT KARLS UNIV HEIDELBERG ; TECHNISCHE UNIV BRAUNSCHWEIG CAROLO WILHELMINA

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66) Family number: 54699189 (US2013228758A) © PatBase

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Title: DENDRIMERS CONTAINING LUMINESCENT GOLD (III)

COMPOUNDS FOR ORGANIC LIGHT-EMITTING DEVICES AND THEIR PREPARATION

Abstract: Source: US2013228758A A novel class of saturated or conjugated dendrimers containing at least one strong sigma-donating group coordinated to cyclometalated

tridentate gold(III) compounds having the chemical structure depicted by generic formula: wherein: (a)

[Au] is a cyclometalated tridentate gold(III) group; (b) Unit A is a sigma-donating chemical group; (c) Unit B is a central part of the dendrons comprising a branch point of component dendrimers; (d) Unit C is optional surface groups or dendrons of the dendrimers; (e) n=0 or 1.

Assignee(s):(std): CHAN MAGGIE MEI YEE ; PREC LAB LLC ; WONG KEITH MAN CHUNG ; YAM VIVIAN WING WAH ; TANG KOBE

MAN CHUNG ; UNIV HONG KONG

Assignee(s): PRECISION LABORATORIES LLC ; OF HONG KONG UNIV

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67) Family number: 54704637 (US2015056426A) © PatBase

Title: INKS CONTAINING METAL PRECURSORS NANOPARTICLES

Abstract: Source: US2015056426A The present invention provides novel ink formulations based on metal salts and metal complexes.

Assignee(s):(std):

YISSUM RES DEV CO ; YISUM RES DEV CO OF HEBREW

UNIV OF JERUSALEM LTD

Assignee(s): YISSUM RESEARCH DEVELOPMENT CO OF HEBREW UNIVERSITY OF JERUSALEM LTD ; YISSUM RESEARCH DEVELOPMENT CO OF HEBREW UNIV OF JERUSALEM LTD ; YISSUM RESEARCH DEVELOPMENT CO OF

HEBREWUNIVERSITY OF JERUSALEM LTD ; YISUM RESEARCH DEVELOPMENT CO OF HEBREW UNIV OF

JERUSALEM LTD

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68) Family number: 54600656 (US2015064446A) © PatBase

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Title: SOLUTION-PROCESSABLE TUNGSTEN OXIDE BUFFER

LAYERS AND ELECTRONICS COMPRISING SAME

Abstract: Source: US2015064446A The present invention relates to the field of organic electronics, such as OLEDs, OPVs and organic photo detectors. It particularly provides intermediates and materials suitable for manufacturing such organic electronics, to specific manufacturing methods and to specific uses. ...

Assignee(s):(std):

NANOGRADE AG

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69) Family number: 54554714 (US2014345682A) © PatBase

Title: MODULAR SUPRAMOLECULAR ACTIVE LAYER AND ORGANIC PHOTOVOLTAIC DEVICES

Abstract: Source: US2014345682A A photoactive layer for an organic photovoltaic device has a supramolecular assembly of donors or acceptors formed from a plurality of units that are mixed with electron acceptors or electron donors, respectively, to form an ordered or semi-ordered bulk heterojunction structure. Each unit is formed from a plurality of sub-units that are combined and ordered by hydrogen bonding or other non-covalent interactions to form units that by pi-stacking and, optionally, other forces are organized into the supramolecular assembly. Each sub-unit includes at least one electron donor ...

Assignee(s):(std):

UNIV FLORIDA

Assignee(s): OF FLORIDA RESEARCH FOUNDATION INC UNIV

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70) Family number: 54552794 (WO13116911A1) © PatBase

Page 729: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: MICROBICIDAL SHAVING SYSTEM USING

HETEROGENEOUS PHOTOCATALYSIS, GENERATED BY RADIATING LIGHT ONTO NANOPARTICLES SISTEMA DE BARBEAR MICROBICIDA POR FOTOCATALISE HETEROGENEA, GERADA POR IRRADIACAO DE LUZ SOBRE NANOPARTICULAS

Abstract:

Source: WO13116911A1 Fields of this patent.. Shaving and depilation hygiene.. Microbicidal activity when

shaving or depilating in domestic and commercial environments.. Prevention of epidermal diseases caused by scraping hairs, using nanoparticles generating microbicidal heterogeneous photocatalysis, which do not cause selection of resistance strains of microorganisms. This patent is intended to advance the prior art in shaving and depilating by using nanometric particles of any type, doped or otherwise, applied in pure form or as combinations of varieties thereof, in any proportions, excited ...

Assignee(s):(std): DUARTE VIEIRA FRANCISCO JOSE

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71) Family number: 54270626 (US2013174892A) © PatBase

Title: COATED GLASSES HAVING A LOW SHEET RESISTANCE, A SMOOTH SURFACE, AND/OR A LOW THERMAL EMISSIVITY

Abstract: Source: US2013174892A A glass sheet has an electrically conductive film having a sheet resistance in the range of 9.5 to 14.0 ohms/square; an emissivity in the range of 0.14 to 017 and an absorption coefficient

of greater than 1.5x103 cm-1 in the wavelength range of 400-1100 nanometers, and a surface roughness of less than 15 nanometers Root Means Square. A glass sheet of another embodiment of the invention has an electrically conductive film having a phosphorous-fluorine doped tin oxide pyrolytically deposited film on

the surface of the glass sheet, wherein the ratio of phosphorous precursor ...

Assignee(s):(std): PPG IND OHIO INC

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72) Family number: 54261972 (US2013169591A) © PatBase

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Title: STRENGTHENED GLASS BLOCK, TOUCH-SENSITIVE DISPLAY DEVICE AND OLED DISPLAY DEVICE

Abstract: Source: US2013169591A A strengthened glass block cut from a mother glass substrate is provided. The mother glass substrate is given a preliminary chemically strengthening treatment, the strengthened glass block has a preliminary strengthened surface area and a newly-born surface area, and the newly-born

surface area is formed as a result of a machining or

material removing treatment. A chemically strengthened layer formed as a result of a secondary chemically strengthening treatment is formed in at least the newly-born surface area.

Assignee(s):(std): WINTEK CORP ; WINTEK CORPORARTION

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73) Family number: 54293968 (KR20130078735A) © PatBase

Title: IN-LINE TYPE EVAPORATION DEVICE FOR MANUFACTURING OF OLED

Abstract: Source: KR20130078735A PURPOSE: An in-line type deposition apparatus for producing a large amount of organic light emitting devices is provided to easily determine a fault by inspecting a deposition state in a state of maintaining a vacuum. CONSTITUTION: A deposition chamber (10) positions a processed substrate in the upper part. An evaporation source (20) is positioned in the lower part of the processed substrate. The evaporation source deposits a deposition material on the processed substrate. A deposition inspection unit (100) is installed inside of the deposition chamber. The deposition ...

Assignee(s):(std):

LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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74) Family number: 54293969 (KR20130078736A) © PatBase

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Title: CLUSTER TYPE EVAPORATION DEVICE FOR MANUFACTURING OF OLED

Abstract: Source: KR20130078736A PURPOSE: A cluster type deposition apparatus for producing a large amount of organic light emitting devices is provided to improve productivity by reducing a time loss according to a deposition process. CONSTITUTION: One or more deposition chambers (10) perform a thin film deposition process in a processed substrate. A transfer chamber (20) is formed with one module. The transfer chamber carries the processed substrate in and out. The transfer chamber carries a process substrate in and out. A buffer chamber installs a deposition inspection unit (200). ...

Assignee(s):(std): LIG ADP CO LTD

Assignee(s): LIGADP CO ; LIGADP CO LTD

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75) Family number: 54078535 (US2014326310A) © PatBase

Title: ORGANIC PHOTOVOLTAIC DEVICE

Abstract: Source: US2014326310A The invention relates to an organic photovoltaic device, in a layered structure, comprising a substrate, a bottom electrode, a top electrode, wherein the bottom electrode is closer to the substrate than the top electrode, an electronically active region, the electronically active region being provided between and being in electrical contact with the bottom electrode and the top electrode, a light absorbing region provided in the electronically active region, and at least one of a non-flat layer provided in the electronically active region, and an electronically inactive ...

Assignee(s):(std): NOVALED AG ; NOVALED GMBH

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76) Family number: 53800737 (US2014306212A) © PatBase

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Title: ORGANIC SEMICONDUCTOR DEVICE AND PROCESS

FOR ITS PRODUCTION

Abstract: Source: US2014306212A An organic semiconductor device selected from organic diodes, organic field effect transistors, and devices comprising an organic diode and/or organic field effect transistor and a method of producing such a device are provided. The organic semiconductor device comprises at least one semiconducting layer based on a diketopyrrolopyrrole (DPP) polymer. The semiconducting layer may effectively be protected against degradation by radiation and/or oxidation by adding at least one stabilizing agent selected from hydroxybenzophenones, hydroxyphenyl benzotriazoles, oxalic acid ...

Assignee(s):(std): BASF SE ; BUDRY JEAN LUC ; KAIHOVIRTA NIKOLAI ; MUSTONEN TERO ; VAIDYANATHAN SUBRAMANIAN ; BASF CHINA CO LTD

Assignee(s): BASF CHINA COMPANY LIMITED ; BASF (CHINA) CO

LTD

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77) Family number: 53671604 (KR20130046271A) © PatBase

Title: CARBON NANOTUBE/METAL OXIDE COMPOSITE, PREPARING METHOD OF THE SAME, AND ORGANIC SOLAR CELL CONTAINING THE SAME

Abstract: Source: KR20130046271A PURPOSE: A carbon nanotube/metal oxide composite, a method for preparing the same, and an organic solar cell containing the same are provided to form a film using ALD(Atomic Layer Deposition) and to prevent the recombination of holes and electrons. CONSTITUTION: A carbon nanotube dispersion solution is manufactured(S02). A carbon nanotube film or a network is formed(S03). The nanotube film or the network is printed(S04). A metal oxide is coated by atomic layer deposition(S05). The metal oxide composite is formed by a coating process(S06). [Reference numerals] (S01) ...

Assignee(s):(std): KOREA ADVANCED INST SCI AND TECH

Assignee(s): KOREA ADVANCED INSTITUTE OF SCIENCE AND

TECHNOLOGY ; KOREA ADVANCED INST OF SCIENCE AND TECHNOLOGY

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78) Family number: 53664248 (US2014252342A) © PatBase

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Title: ENCAPSULATION BARRIER STACK

Abstract: Source: US2014252342A Disclosed is an encapsulation barrier stack, capable of encapsulating a moisture and/or oxygen sensitive article and comprising a multilayer film, wherein the multilayer film comprises: one or more barrier layer(s) having low moisture

and/or oxygen permeability, and one or more sealing layer(s) arranged to be in contact with a surface of the

at least one barrier layer, thereby covering defects present in the barrier layer, wherein the one or more sealing layer(s) comprise(s) a plurality of encapsulated nano-particles, the nanoparticles being reactive in that they are ...

Assignee(s):(std): AGENCY SCIENCE TECH AND RES ; TERA BARRIER FILMS PTE LTD

Assignee(s): AGENCY FOR SCIENCE TECHNOLOGY AND RESEARCH ;

RAMADAS SENTHIL KUMAR ; SHANMUGAVEL SARAVAN

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79) Family number: 53556372 (US2014272465A) © PatBase

Title: METHOD OF HEAT TREATMENT OF SILVER LAYERS

Abstract:

Source: US2014272465A The subject of the invention is a process for obtaining a material comprising a substrate coated on at least one portion of at least one of its faces with a stack of thin layers comprising at least one silver layer, said process comprising a step of depositing said stack then a heat treatment step, said heat treatment being carried out by irradiating at least one portion of the surface of said stack using at least one incoherent light source for an irradiation time ranging from 0.1 millisecond to 100 seconds, so that the sheet resistance and/or the emissivity of said ...

Assignee(s):(std): SAINT GOBAIN ; SAINT GOBAIN LINAK AS

Assignee(s): SAINT GOBAIN GLASS PRANCE ; SAINT GOBAIN GLASS FRANCE ; LIENHART FABIEN ; PYTHON MARTIN

80) Family number: 53491635 (US2013092972A) © PatBase

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Title: ORGANIC LIGHT EMITTING DIODE DISPLAY AND

METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2013092972A An organic light emitting diode (OLED) display includes: a substrate; an organic light emitting diode formed on the substrate; a first inorganic layer formed on the substrate and covering the organic light emitting diode; an intermediate layer formed on the first inorganic layer and covering an area relatively smaller than the first inorganic layer; and a second inorganic layer formed on the first inorganic layer and the intermediate layer, and contacting the first inorganic layer at an edge thereof while covering a relatively larger area than the intermediate layer. A ...

Assignee(s):(std): SAMSUNG DISPLAY CO LTD ; SAMSUNG MOBILE DISPLAY CO LTD ; SEO SANG JOON ; KIM JIN KWANG ;

KIM SEUNG HUN

Assignee(s): SAMSUNG DISPLAY CO ; SAMSUNG MOBILE DISPLAY CO LTD A CHARTERED IN AND E ; SAMSUNG MOBILE

DISPLAY CO LTD A CHARTERED IN AND EXISTING UNDER LAWS OF REPUBLIC OF KOREA CORP ;

SAMSUNG MOBILE DISPLAY CO

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81) Family number: 53504879 (US2014225867A) © PatBase

Title: WALL COVERING ELEMENT WITH DETECTION SYSTEM

Abstract:

Source: US2014225867A At least partially transparent sheet-like covering element (2) provided with a detection system for the presence and/or characterization of an object or a material and associated further embodiments of the invention. The covering element is characterized in that it is fitted in

front of or to the wall substrate of a wall of a building, substantially over the entire surface thereof, and the detection system (operating element, "touch panel") operates according to the "projected capacitive touchscreen" principle and is provided or implemented such that it rests against ...

Assignee(s):(std): GROSSENBACHER SYSTEM AG

Assignee(s): SCHIMANSKI ANDREAS

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82) Family number: 53522780 (US2014239287A) © PatBase

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Title: SIMPLIFIED ORGANIC EMITTING DIODE AND METHOD FOR PREPARING THE SAME

Abstract: Source: US2014239287A An organic light emitting device having a simplified structure, and a method of fabricating the same, are provided.

Assignee(s):(std): POSTECH ACAD IND FOUND

Assignee(s): POSTECH ACADEMY IND FOUNDATION ; POSTECH

ACADEMY INDUSTRY FOUNDATION

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83) Family number: 53487523 (KR20130033093A) © PatBase

Title: ORGANIC LIGHT EMITTING DIODE(OLED) AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: KR20130033093A PURPOSE: An organic light emitting device and a manufacturing method thereof are provided to improve productivity by forming a sub electrode with a vacuum deposition process or a sputtering process using a shadow mask. CONSTITUTION: An interconnection electrode(20) is formed on one side of a substrate(10) and supplies main power. A sub electrode(30) is formed on one side of the substrate with a preset pattern. An inclined surface(31) is formed on both edges of the sub electrode. A first electrode(40) is coated to cover a part of the interconnection electrode and the sub ...

Assignee(s):(std):

DMS CO LTD

Assignee(s): DMS CO

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84) Family number: 53272533 (US2013069067A) © PatBase

Page 749: oes-net.de · - VERTRAULICH - Technologiestudie zu Dünnschichtdepositionstechnologien für Organische Elektronik: Am Fallbeispiel Organic Electronics Saxony e.V. von Dipl.-Wirt

Title: ORGANIC LIGHT EMITTING DIODE (OLED) DISPLAY DEVICE AND METHOD FOR MANUFACTURING THE SAME

Abstract: Source: US2013069067A The present invention relates to an organic light emitting diode (OLED) display device and a manufacturing method thereof. An object of the present invention is to provide an organic light emitting diode (OLED) display device and a manufacturing method thereof, in which an auxiliary electrode is formed between a substrate and a second electrode of an OLED cell so as to be connected with the second electrode, thereby improving the luminance uniformity of a large-area the OLED display device, and enabling the quality improvement and economic manufacture of products ...

Assignee(s):(std): YOUN KEUN CHUN

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85) Family number: 53296942 (US2015024539A) © PatBase

Title: FORMULATION OF COLLOIDAL TITANIUM-OXIDE SOLUTIONS COMPOSITION FOR COATING AND PRINTING METHODS, AND IMPROVEMENT OF THE OUTPUT AND LIFESPAN OF ORGANIC P-I-N/N-I-P PHOTOVOLTAIC CELLS

Abstract: Source: US2015024539A The invention relates to a method for preparing a colloidal nanoparticle solution,

including: (a) dissolving a titanium-oxide precursor, referred to as a precursor, in one or more solvents, referred to as precursor solvents; and (b) chemically converting, preferably by means of hydrolysis, said titanium-oxide precursor and said precursor solvent into a colloidal-solution solvent so as to form titanium-

oxide nanoparticles that are dispersed in the colloidal-solution solvent, said colloidal solution having a dynamic viscosity of between 4 and 54 cP at 20 degrees ...

Assignee(s):(std):

ARDEJE ; BARRET MICKAEL ; BERSON SOLENN ; BROHAN LUC RENE ROGER ; CENTRE NAT RECH SCIENT ; COMMISSARIAT A L ENERGIE ATOMIQUE ; UNIV NANTES ; COMMISSARIAT ENERGIE ATOMIQUE ; GUILLEREZ STEPHANE ; MOURAO JEROME ; KARPINSKI ARKADIUSZ MICHAL ; RICHARD PLOUET MIREILLE ; COMMISSARIAT L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; OF NANTES UNIV

Assignee(s):

COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIESALTERNATIVES ; COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; DE NANTES UNIV ; UNIVERSITE DE NANTES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE C N R S ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (CNRS) ; CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE

CNRS ; CENTRE NATIONAL DE LA RECHERCHE

SCIENTIFIQUE CNRS

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86) Family number: 53096911 (US2014290373A) © PatBase

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Title: POLYMER LAYER SYSTEM PRESSURE SENSOR DEVICE,

AND POLYMER LAYER SYSTEM PRESSURE SENSOR METHOD

Abstract: Source: US2014290373A A polymer layer system pressure sensor device includes a first polymer substrate having a first cavity and a first polymer

membrane stretched over the first cavity. The first polymer membrane is configured to be deflected

dependent on a pressure in the first cavity. The device further includes a first membrane metallization layer applied to the first polymer membrane above the first cavity. The first membrane metallization layer is configured to be deflected together with the first polymer membrane dependent on the pressure in the first cavity. The device further ...

Assignee(s):(std): BOSCH GMBH ROBERT ; BRETTSCHNEIDER THOMAS ; DORRER CHRISTIAN

Assignee(s): ROBERT BOSCH GMBH

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87) Family number: 52789901 (US2013015430A) © PatBase

Title: COMPOSITE ORGANIC/INORGANIC LAYER FOR ORGANIC LIGHT-EMITTING DEVICES

Abstract: Source: US2013015430A Organic electronic devices comprising a covalently bonded organic/inorganic composite layer. The composite layer may be formed by the reaction of a metal alkoxide with a charge transport compound having one or more hydroxyl groups. Examples of metal alkoxides that can be used include vanadium alkoxides, molybdenum alkoxides, titanium alkoxides, or silicon alkoxides. This composite layer can be used for any of the various charge conducting layers in an organic electronic device, including the hole injection layer. ...

Assignee(s):(std): BROOKS JASON ; CHEON KWANG OHK ; HARIKRISHNA MOHAN SIDDHARTH ; KWONG RAYMOND ; UNIVERSAL DISPLAY CORP ; XIA CHUANJUN

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88) Family number: 52804653 (US2014138719A) © PatBase

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Title: ORGANIC OPTOELECTRONIC DEVICE AND METHOD FOR

THE ENCAPSULATION THEREOF

Abstract: Source: US2014138719A The invention relates to an organic optoelectronic device which is protected from ambient air by a sealed encapsulation structure of the type including at least one thin layer. The device

includes a substrate; at least one light-emitting unit deposited on the substrate, incorporating internal

electrodes and external electrodes defining an active zone and, between the electrodes, a stack of organic; and a sealed encapsulation structure having one or more thin layers including at least one inorganic layer placed on top of the light-emitting unit and encasing same ...

Assignee(s):(std): COMMISSARIAT ENERGIE ATOMIQUE ; KANAAN HANI ; MAINDRON TONY ; COMMISSARIAT L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

Assignee(s): COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES ; COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIESALTERNATIVES ; COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

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89) Family number: 52661325 (US2013001596A) © PatBase

Title: DEPOSITION OF ESD PROTECTION ON PRINTED CIRCUIT BOARDS

Abstract: Source: US2013001596A A method and apparatus for providing electro-static discharge (ESD) protection to light emitting diode (LED) systems on printed circuit boards (PCBs). Protection is provided by ESD diodes deposited on the PCBs configured as flexible substrates.

Various deposition techniques are employed including chemical vapor deposition, pulsed laser deposition and atomic layer deposition.

Assignee(s):(std): HAMBY DAVID ; HAMBY DAVID W ; OSRAM SYLVANIA INC ; SCOTCH ADAM ; SCOTCH ADAM M

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90) Family number: 52604262 (WO12175128A1) © PatBase

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Title: VAPOR DEPOSITION SYSTEM AND SUPPLY HEAD

Abstract: Source: WO12175128A1 A vapor deposition system for delivering a mixture of a carrier gas and a deposition gas to a temperature controlled target substrate comprising a rotor; a stator positioned within the rotor for relative rotational movement between the stator and the rotor, the rotor including a plurality of support faces, each of the support faces having a frame mounted thereto; an electrically conductive, three-dimensional, open cell, reticulated structure heater element having a solid coating of a selected vapor deposition material vapor deposited thereon supported within each frame, ...

Assignee(s):(std): AIXTRON SE ; GERSDORFF MARKUS ; GOPI BASKAR PAGADALA ; LONG MICHAEL

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