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Materials science / Solar cells / Energy conversion / Crystals / Solar cell / Polycrystalline silicon / Amorphous silicon / Layer / Wafer / Semiconductor device fabrication / Technology / Energy


Process Optimization for High Efficiency Heterojunction c-Si Solar Cells Fabrication Using Hot-Wire Chemical Vapor Deposition: Preprint
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Document Date: 2013-10-01 20:53:05


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City

Austin / Golden / /

Company

Qi Wang National Renewable Energy Laboratory / Renewable Energy / Sustainable Energy LLC / RCA / National Renewable Energy Laboratory / /

Country

United States / /

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Event

Business Partnership / /

Facility

bridge Available / National Renewable Energy Laboratory / Port Royal Road Springfield / /

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IndustryTerm

Minority carrier lifetime / long minority carrier lifetime / orders@ntis.fedworld.gov online ordering / carrier lifetime / minority carrier lifetime study / chemical vapor deposition / minority carrier lifetimes / e-beam / metal layers / carrier lifetime measurements / carrier injection density / gas mixtures / minority carrier lifetime degradation / /

Organization

U.S. Department of Commerce National Technical Information Service / U.S. Department of Energy / U.S. Department of Energy office of Scientific / US Government / Alliance for Sustainable Energy / United States government / /

Person

William Nemeth / Qi Wang Presented / Matthew Page / Hao-Chih Yuan / Lorenzo Roybal / Preprint Yuming Ai / /

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Position

contractor / /

ProvinceOrState

Tennessee / Virginia / Colorado / /

Technology

Spectroscopy / CVD / Chemical Vapor Deposition / /

URL

http /

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