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Electronics / Energy conversion / Energy harvesting / Solar cell / Nanowire / Vapor–liquid–solid method / Wafer / Photovoltaics / Thermal oxidation / Semiconductor device fabrication / Technology / Energy


This article has been accepted for inclusion in a future issue of this journal. Content is final as presented, with the exception of pagination. IEEE JOURNAL OF PHOTOVOLTAICS 1 Wafer-Scale Growth of Silicon Microwire Ar
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Document Date: 2013-09-10 11:44:39


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City

Pasadena / Schottkyjunction / /

Country

United States / /

Currency

USD / /

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Facility

California Institute of Technology / /

IndustryTerm

short minority carrier diffusion lengths / gas flow / chemical cleaning / research grade photolithography equipment / carrier collection / chemical vapor deposition / microwire-array devices / energy-conversion properties / imaging / photovoltaic applications / chemical etch / carrier extraction / photovoltaic devices / photovoltaic manufacturing / chemical vapor deposition furnace / photovoltaic technology / microwire devices / homebuilt peel-off tool / model using software / gas injection / /

Organization

California Institute of Technology / Defense Advanced Research Projects Agency / U.S. Department of Energy / National Science Foundation / Department of Physics / Colorado School of Mines / Department of Applied Physics / Division of Chemistry and Chemical Engineering / /

Person

J. R. Maiolo / E. L. Warren / K. E. Plass / N. S. Lewis / Michael D. Kelzenberg / M. C. Putnam / Nat / Nathan S. Lewis / J. M. Spurgeon / M. G. Walter / S. W. Boettcher / M. D. Kelzenberg / Daniel B. Turner-Evans / R. M. Briggs / H. A. Atwater / J. R. McKone / B. S. Brunschwig / Adele C. Tamboli / Christopher T. Chen / B. M. Kayes / J. Y. Baek / Emily L. Warren / /

ProvinceOrState

California / /

RadioStation

AM 1 / /

Technology

3-D / photolithography / chemical vapor deposition / laser / Digital Object Identifier / CVD / Electrochemistry / /

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http /

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