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Semiconductor devices / Optical materials / Lighting / Energy conversion / Diodes / Schottky diode / Gallium phosphide / Solar cell / Phosphor / Chemistry / Technology / Physics


MG DOPING AND ALLOYING IN ZN3P2 HETEROJUNCTION SOLAR CELLS Gregory M. Kimball, Nathan S. Lewis, Harry A. Atwater California Institute of Technology, Pasadena, California, United States ABSTRACT
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Document Date: 2011-06-09 17:37:03


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City

Berlin / Photoluminescence / Pasadena / San Diego / /

Company

Carrier / Renewable Energy / Additional Ag / Wyeth / the Dow Chemical Company / /

Country

United States / Ireland / /

Currency

pence / USD / /

Event

Business Partnership / /

Facility

R. B. Hall / Harry A. Atwater California Institute of Technology / /

IndustryTerm

Red phosphorus chips / metal dopant source / representative devices / active area devices / chemical removal / solar energy-conversion efficiency / diode devices / heterojunction devices / aqueous solution / energy / /

Organization

California Institute of Technology / Division of Geological and Planetary Sciences / office of Energy Efficiency / Caltech Center for Sustainable Energy Research / US Department of Energy / Electrochemical Society / /

Person

Ion Mass Spectrometry / Harry A. Atwater / Nathan S. Lewis / Crystal Growth / /

Position

representative / /

Product

indium / /

ProvinceOrState

California / /

PublishedMedium

Applied Physics Letters / Journal of Applied Physics / /

RadioStation

AM 1 / /

Technology

semiconductor / Red phosphorus chips / recombination / photolithography / /

SocialTag