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Conference Paper
Solar Energy: New Materials and Nanostructured Devices for High Efficiency
Stanford, California United States
June 24-25, 2008
Poster Session I (STuC)

Semiconductor Alloy Nanowires with Spatially Graded Compositions for Full-Spectrum Solar Cell Applications

A. L. Pan, E. S. Leong, M. Sun, C. z. Ning, W. C. Zhou, and B. S. Zou

http://dx.doi.org/10.1364/SOLAR.2008.STuC6


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Abstract

We demonstrate CdSxSe1-xnanowire growth with x changing from 0 to 1 continuously within 1-cm substrate corresponding to 200-nm wavelength variation on a single substrate, providing novel full-spectrum materials for high-efficiency solar cell applications.

© 2008 Optical Society of America

OCIS Codes
(160.0160) Materials : Materials
(160.4670) Materials : Optical materials
(350.0350) Other areas of optics : Other areas of optics
(350.6050) Other areas of optics : Solar energy

Citation
A. L. Pan, E. S. Leong, M. Sun, C. z. Ning, W. C. Zhou, and B. S. Zou, "Semiconductor Alloy Nanowires with Spatially Graded Compositions for Full-Spectrum Solar Cell Applications," in Solar Energy: New Materials and Nanostructured Devices for High Efficiency, (Optical Society of America, 2008), paper STuC6.
http://www.opticsinfobase.org/abstract.cfm?URI=Solar-2008-STuC6


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