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Facile colloidal synthesis of quinary CuIn1-xGa x(SySe1-y)2 (CIGSSe) nanocrystal inks with tunable band gaps for use in low-cost photovoltaics
Journal article   Peer reviewed

Facile colloidal synthesis of quinary CuIn1-xGa x(SySe1-y)2 (CIGSSe) nanocrystal inks with tunable band gaps for use in low-cost photovoltaics

Shu-Hao Chang, Ming-Yi Chiang, Chien-Chih Chiang, Fang-Wei Yuan, Chia-Yu Chen, Bo-Cheng Chiu, Tzu-Lun Kao, Chi-Huang Lai and Hsing-Yu Tuan
Energy and Environmental Science, Vol.4(12), pp.4929-4932
12/2011

Abstract

We report, for the first time, colloidal synthesis of quinary CuIn 1-x Ga x (S y Se 1-y ) 2 (CIGSSe) nanocrystals across the entire composition range (x,y) = 0 to 1 with band gaps tunable in the range of 0.98 to 2.40 eV by facile chemical synthesis. As a proof-of-concept, thin-film solar cells made by using the CIGSSe nanocrystal inks as an absorber layer precursor exhibited an efficiency over 1% under AM 1.5 illumination. © The Royal Society of Chemistry 2011.

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