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Nanoelectronics / Nanowire / Vapor–liquid–solid method / Solar cell / Current density / Zinc oxide / Chemistry / Energy conversion / Semiconductor devices


Published on Web[removed]High Aspect Ratio Silicon Wire Array Photoelectrochemical Cells James R. Maiolo III, Brendan M. Kayes, Michael A. Filler, Morgan C. Putnam, Michael D. Kelzenberg, Harry A. Atwater,* and Natha
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Document Date: 2007-09-28 10:32:59


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City

Lin / New York / /

Company

BP / John Wiley & Sons / /

Country

United States / /

Currency

USD / /

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Facility

Nathan S. Lewis* KaVli Nanoscience Institute / California Institute of Technology / Beckman Institute / /

IndustryTerm

solar energy conversion devices / high minority carrier diffusion length / carrier lifetimes / solar energy conversion / carrier collection / chemical vapor deposition / energy conversion properties / energy / /

Movie

A. I. / /

Organization

California Institute of Technology / Center for Science and Engineering Materials / African Union / NSF Materials Research Science and Engineering Center / Beckman Institute / Department of Energy / A. Atwater / * and Nathan S. Lewis* KaVli Nanoscience Institute / office of Basic Energy Sciences / /

Person

James R. Maiolo III / Jsc / Michael D. Kelzenberg / Michalak / Harry A. Atwater / Nathan S. Lewis / Brendan M. Kayes / Morgan C. Putnam / Michael A. Filler / /

Position

D. J. / J. D. J. / Representative / /

ProvinceOrState

Nova Scotia / Y. T. / /

RadioStation

B J. AM / J. AM / /

Region

East California / /

Technology

Semiconductor DeVices / recombination / photolithography / CVD / chemical vapor deposition / /

URL

http /

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