2006University of North Texas Digital Library (University of North Texas)Open access

High Efficiency CdTe and CIGS Thin Film Solar Cells: Highlights of the Technologies Challenges

R. Noufi

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Abstract

Area (cm 2 ) CIGSe CIGSe CIGS CIAS CdTe CdTe CdTe Area (cm 2 ) V oc = 0.676 V J sc = 32 mA/cm 2 FF= 79.5%; Eff = 17.2%Thinner Absorbers 0.4 µm V oc = 0.565 V J sc = 21.3 mA/cm 2 FF= 75.7%;Eff = 9.1%

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Area (cm 2 ) CIGSe CIGSe CIGS CIAS CdTe CdTe CdTe Area (cm 2 ) V oc = 0.676 V J sc = 32 mA/cm 2 FF= 79.5%; Eff = 17.2%Thinner Absorbers 0.4 µm V oc = 0.565 V J sc = 21.3 mA/cm 2 FF= 75.7%;Eff = 9.1%

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Available abstract

Area (cm 2 ) CIGSe CIGSe CIGS CIAS CdTe CdTe CdTe Area (cm 2 ) V oc = 0.676 V J sc = 32 mA/cm 2 FF= 79.5%; Eff = 17.2%Thinner Absorbers 0.4 µm V oc = 0.565 V J sc = 21.3 mA/cm 2 FF= 75.7%;Eff = 9.1%

Key concepts: Copper indium gallium selenide solar cells, Thin film solar cell, Cadmium telluride photovoltaics, Materials science, Optoelectronics, Quantum dot solar cell, Thin film, Photovoltaic system

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