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Nanowire / Wire / Vapor–liquid–solid method / Physics / Solar cell / Reference electrode / Volt / Array data type / Electromagnetism / Technology / Nanoelectronics


Flexible, PolymerSupported, Si Wire Array Photoelectrodes
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Document Date: 2010-08-11 17:12:11


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City

Si / New York / obtained using the Si / Weinheim / /

Company

WILEY-VCH Verlag GmbH & Co. KGaA / Dow Corning / John Wiley & Sons / BP plc / /

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Facility

Prof. N. S. Lewis California Institute of Technology Division / NSF Center / Prof. H. A. Atwater California Institute of Technology Division / /

IndustryTerm

wire array solar energy-conversion device / energy-conversion efficiencies / aqueous methyl viologen2+/+ solution / transparent solutions / conductive silver paint / solar energy-conversion efficiencies / photoelectrochemical energy-conversion properties / high energy-conversion efficiencies using material / Minority-carrier collection lengths / imaging / radial minority-carrier collection / solar energy-conversion performance / energy-conversion performance / minority-carrier collection length / /

OperatingSystem

Ose / /

Organization

Caltech Center for Sustainable Energy Research / National Science Foundation / California Institute of Technology Division of Chemistry and Chemical Engineering / California Institute of Technology Division of Engineering and Applied Science / Department of Energy / Caltech Center for Science and Engineering of Materials / office of Basic Energy Sciences / NSF Center for Chemical Innovation Grant / /

Person

Bruce S. Brunschwig / N. S. Lewis / H. A. Atwater / D. B. Turner-Evans / M. C. Putnam / B. S. Brunschwig / Michael D. Kelzenberg / Joshua M. Spurgeon / Harry A. Atwater / Nat / Nathan S. Lewis / Shannon W. Boettcher / J. M. Spurgeon / S. W. Boettcher / H. Razavi / /

Position

author / bendable current collector / representative / /

ProvinceOrState

New York / /

RadioStation

AM 1.5 / /

Technology

semiconductor / laser / recombination / /

URL

www.advmat.de / www.MaterialsViews.com / /

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