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GOUGH NEIL: Cross-linked quantum dots and methods for producing and using the same. HCF PARTNERS, Cha Don D, May 20, 2010: WO/2010/056240 (3 worldwide citation)

The present invention relates to modified quantum dots (QDs) and methods for using and producing the same. Some aspects of the invention provide cross-linked quantum dots and methods for producing and using the same.


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Gough Neil, Dameron Arrelaine: Atomic layer deposition encapsulation. Hcf Partners, Gough Neil, Dameron Arrelaine, CHA Don D, May 14, 2009: WO/2009/061704 (2 worldwide citation)

The invention provides devices that are conformally encapsulated using ALD and methods for producing the same.


3
Gabriel Joseph Caballero: Light emitting molecules and organic light emitting devices including light emitting molecules. HCF Partners, Greenlee Winner and Sullivan P C, July 1, 2008: US07393598 (1 worldwide citation)

Light emitting molecules and organic light emitting devices comprising such light emitting molecules are described. In one embodiment, a light emitting molecule comprises an anchoring group and a charge transport group having a first end and a second end. The first end of the charge transport group ...


4
Neil Gough, Jun Mo Gil, Wesley Thomas Walker, Nicolas Frederick Colaneri, William A Huffman: Light emitting polymer devices using self-assembled monolayer structures. HCF Partners, Arnold & Knobloch L, June 21, 2011: US07964878 (1 worldwide citation)

A light emitting device comprising a transparent substrate; a layer of conducting material in contact with the transparent substrate; a self-assembled monolayer bonded to the layer of conducting material; one or more light emitting polymer layers in electron contact to the self-assembled monolayer; ...


5
Gough Neil, Williams Christopher: Organic light-emitting diodes with electrophosphorescent-coated emissive quantum dots. Hcf Partners, July 21, 2010: EP2208396-A1

The present invention provides a composition comprising quantum dots and a coating material that comprises an electro-phosphorescent moiety, and methods for producing and using the same. In particular, compositions of the invention are used in organic light emitting diodes (OLEDs), and electronic de ...


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Arrelaine A Dameron: Atomic Layer Deposition Process. HCF Partners, Arnold & Knobloch, November 25, 2010: US20100297474-A1

The invention provides methods for selectively coating a substrate surface comprising a first and a second material with a thin film of a protective material using an atomic layer deposition process.


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Neil Gough, Ethan Tsai, William A Huffman, Christopher d Williams, Arrelaine A Dameron: Hole Transport Polymer for Use in Electronic Devices. Hcf Partners, Arnold & Knobloch, December 9, 2010: US20100308754-A1

Organic light emitting diode (OLED) devices are one of the most promising alternatives to liquid crystal displays (LCDs) for flat panel display (FPD) applications. The OLED technique is based on organic semiconductors used either as hole- or electron transporting materials or as an emitter. Working ...


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Neil Gough, Jun Mo Gil, Wesley Thomas Walker, Nicolas Frederick Colaneri, William A Huffman: Light Emitting Polymer Devices Using Self-Assembled Monolayer Structures. HCF Partners, Don D Cha, June 3, 2010: US20100134052-A1

A light emitting device comprising a transparent substrate; a layer of conducting material in contact with the transparent substrate; a self-assembled monolayer bonded to the layer of conducting material; one or more light emitting polymer layers in electron contact to the self-assembled monolayer; ...


10
Neil Gough, Christopher Williams: Organic Light-Emitting Diodes with Electrophosphorescent-Coated Emissive Quantum Dots. HCF Partners, Arnold & Knobloch, September 9, 2010: US20100224859-A1

The present invention provides a composition comprising quantum dots and a coating material that comprises an electro-phosphorescent moiety, and methods for producing and using the same. In particular, compositions of the invention are used in organic light emitting diodes (OLEDs), and electronic de ...