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Xiaolei Liu, 36176 Jeffrey Ter, Sunnyvale, CA 94086

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Us Patents

Organic Optoelectronic Device Electrodes With Nanotubes

US Patent:
2008001, Jan 24, 2008
Filed:
Jul 18, 2007
Appl. No.:
11/779638
Inventors:
Daihua Zhang - Palo Alto CA, US
Xiaolei Liu - Los Angeles CA, US
Evgueni Polikarpov - Los Angeles CA, US
James Ly - Los Angeles CA, US
Mark Thompson - Anaheim CA, US
Chongwu Zhou - Rowland Heights CA, US
Cody Schlenker - Los Angeles CA, US
International Classification:
H01L 51/50
B05D 3/00
US Classification:
313498000, 427561000, 427058000, 977750000
Abstract:
An electrode for use in an organic optoelectronic device is provided. The electrode includes a thin film of single-wall carbon nanotubes. The film may be deposited on a substrate of the device by using an elastomeric stamp. The film may be enhanced by spin-coating a smoothing layer on the film and/or doping the film to enhance conductivity. Electrodes according to the present invention may have conductivities, transparencies, and other features comparable to other materials typically used as electrodes in optoelectronic devices.

Organic Optoelectronic Device Electrodes With Nanotubes

US Patent:
2011001, Jan 27, 2011
Filed:
Oct 5, 2010
Appl. No.:
12/898162
Inventors:
Daihua ZHANG - Palo Alto CA, US
Xiaolei LIU - Los Angeles CA, US
Evgueni POLIKARPOV - Los Angeles CA, US
James LY - Los Angeles CA, US
Mark E. THOMPSON - Anaheim CA, US
Chongwu ZHOU - Rowland Heights CA, US
Cody SCHLENKER - Los Angeles CA, US
Assignee:
The University of Southern California - Los Angeles CA
International Classification:
H01L 33/04
H01L 21/28
US Classification:
257 13, 438 34, 257E21158, 257E2712, 257E33055, 977840, 977750
Abstract:
An electrode for use in an organic optoelectronic device is provided. The electrode includes a thin film of single-wall carbon nanotubes. The film may be deposited on a substrate of the device by using an elastomeric stamp. The film may be enhanced by spin-coating a smoothing layer on the film and/or doping the film to enhance conductivity. Electrodes according to the present invention may have conductivities, transparencies, and other features comparable to other materials typically used as electrodes in optoelectronic devices.

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