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Title Optimizing carbon nanotube contacts for use in organic photovoltaics [electronic resource] : preprint / T.M. Barnes.

Imprint Golden, CO : National Renewable Energy Laboratory, 2008.

Copies

Location Call No. OPAC Message Status
 Axe Federal Documents Online  E 9.17:NREL/CP-520-42550    ---  Available
Description 1 online resource (5 p.) : ill.
Series NREL/CP ; 520-42550
Conference paper (National Renewable Energy Laboratory (U.S.)) ; 520-42550.
Type Of Report Conference paper; 11-16 May 2008.
Note Title from title screen (viewed June 4, 2008).
"May 2008."
"Presented at the 33rd IEEE Photovoltaic Specialists Conference, San Diego, California, May 11-16, 2008."
Summary Transparent electrical contacts (TCs) play an important role in thin film photovoltaics (PV), including in organic devices (OPV). OPV devices have different TC requirements than traditional thin film devices, due to the need to make them flexible, cost and manufacturing constraints, and the potential benefits that may be realized from using a hole conducting TC. Additionally, the active layer in an OPV device is far thinner than in an inorganic "thin-film" device, causing TC morphology to have a significant effect on device performance. Here, we present data on optimizing carbon nanotube networks for use as TCs in OPV. We look at network deposition techniques and required post-treatment methods along with electrical, optical, and morphological data to devise a fabrication process for a high quality network that is compatible with OPV device production.
Bibliography Includes bibliographical references (p. 4-5).
Funding DE-AC36-99-GO10337. PVA72802.
Subject Nanotubes -- Electric properties.
Nanostructured materials -- Research.
Organic semiconductors.
Added Author Barnes, Teresa M.
National Renewable Energy Laboratory (U.S.)
IEEE Photovoltaic Specialists Conference (33rd : 2008 : San Diego, Calif.)
Gpo Item No. 0430-P-04 (online)
Sudoc No. E 9.17:NREL/CP-520-42550

 
    
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