DocumentCode :
3520108
Title :
Transparent conductors for full spectrum photovoltaics
Author :
Yu, Kin Man ; Mayer, Marie A. ; Speaks, Derrick T. ; He, Hongcai ; Zhao, Ruying ; Hsu, L. ; Mao, Samuel S. ; Haller, E.E. ; Walukiewicz, Wladek
Author_Institution :
Mater. Sci. Div., Lawrence Berkeley Nat. Lab., Berkeley, CA, USA
fYear :
2012
fDate :
3-8 June 2012
Abstract :
Low transparency of conventional transparent conducting oxides (TCOs) in the IR region (λ~1000 nm) due to absorption and reflection by the high concentration of free carrier restricts the applications of materials to photovoltaics that do not use the infrared part of the solar spectrum. In order to maintain low resistivity with reduced free carrier absorption, TCOs with high mobility are required. We have found that among metal oxides, CdO has all the essential requirements for low resistance and high infrared transmission: low electron scattering rates and high electron mobility. In this work we report the electrical and optical properties of CdO, undoped and doped with various n-type dopants, grown using pulsed laser deposition (PLD). We found that nominally undoped CdO films have Hall mobilities in the range of 50-150 cm2/Vs with carrier concentrations of 3×1020-2×1019 cm-3 corresponding to a high compensation ratio k=0.7. However, with appropriate intentional doping, ideal uncompensated CdO with extremely high conductivity (>;104 S/cm) and an excellent transmission window in the range from 400 to >;1500 nm can be achieved. These properties make CdO an ideal TCO for photovoltaics with low band gap absorbers including Si and high efficiency multijunction cells.
Keywords :
cadmium compounds; pulsed laser deposition; solar cells; CdO; Hall mobilities; IR region; PLD; TCO; electrical properties; free carrier concentration; free carrier reflection; full spectrum photovoltaics; high electron mobility; high infrared transmission; low electron scattering rates; low resistance transmission; n-type dopants; optical properties; photovoltaic cells; pulsed laser deposition; reduced free carrier absorption; solar spectrum; transparent conducting oxides; wavelength 1000 nm; Absorption; Conductivity; Electron optics; Optical films; Optical reflection; Cadmium oxide; Photovoltaic cells; Transparent Conducting oxides; Wide band gap semiconductors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2012 38th IEEE
Conference_Location :
Austin, TX
ISSN :
0160-8371
Print_ISBN :
978-1-4673-0064-3
Type :
conf
DOI :
10.1109/PVSC.2012.6317996
Filename :
6317996
Link To Document :
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