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Semiconductor devices / Compound semiconductors / Indium gallium phosphide / Phosphides / Gallium arsenide / Multijunction photovoltaic cell / Zinc selenide / Quantum efficiency / Chemistry / Solar cells / Energy conversion


Investigation on ZnSe for ZnSe/GaAs/Ge High Efficiency Solar Cells Guochang Li Institute of Applied Physics, University of Science and Technology of Hebei, 050018, China Guohua Li Institute of Applied Physics, Shijiazhua
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Document Date: 2009-03-20 11:54:15


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Company

Renewable Energy / Ge / /

Country

United States / Columbia / /

Facility

City University of New York / University of Delaware / China Guohua Li Institute of Applied Physics / Institute of Energy Conversion / Ge High Efficiency Solar Cells Guochang Li Institute of Applied Physics / Shijiazhuang Railway Institute / Columbia University / University of Science / /

IndustryTerm

hopeful / energy conversion efficiency / energy gap / energy conversion / energy gaps / solar energy / /

MusicGroup

Fig.4 / /

Organization

Fraunhofer Institut Solare Energiesysteme / Institute of Applied Physics / China Jertrude F. Neumark Department of Materials Science / Shijiazhuang Railway Institute / Institute of Energy Conversion / China Scholarship Council / University of Science and Technology of Hebei / Science and Technology Department of Hebei Province / University of Delaware / the City University of New York / Columbia University / New York / /

Person

G.F. Neumark / M.C.Tamargo / /

Product

GaInP / /

ProvinceOrState

Hebei Province / Hebei / Delaware / New York / /

RadioStation

AM 1.5 / /

Technology

semiconductor / Technology of Hebei / /

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