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Temperature-dependent current–voltage and admittance spectroscopy analysis on cesium-treated Cu (In1 − x,Gax)Se2 solar cell before and after heat-light soaking and subsequent heat-soaking treatments
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Temperature-dependent current–voltage and admittance spectroscopy analysis on cesium-treated Cu (In1 − x,Gax)Se2 solar cell before and after heat-light soaking and subsequent heat-soaking treatments

Ishwor Khatri, Tzu-Ying Lin, Takahiko YashiroMutsumi Sugiyama
Progress in Photovoltaics: Research and Applications, 卷.28(11), 頁碼.1158-1166
11/2020

摘要

admittance spectroscopy CsF-PDT heat soaking heat-light soaking metastable behavior Electronic Optical and Magnetic Materials Renewable Energy Sustainability and the Environment Condensed Matter Physics Electrical and Electronic Engineering
Recently, we demonstrated the positive effects of heat-light soaking (HLS) and subsequent heat-soaking (HS) on cesium fluoride (CsF) treated Cu(In 1 - x, Ga x )Se 2 (CIGS) solar cells. However, the role of defects formation and its influence on the electronic properties have not been analyzed. With this motivation, here, we analyzed the electronic properties of CsF-free and CsF-treated CIGS solar cells before and after HLS and subsequent HS treatments using temperature-dependent current–voltage (J–V–T), admittance and low-temperature capacitance–voltage (C–V) measurements. We noticed that CsF-treated CIGS solar cells form a minority carrier trap level after HLS. The subsequent HS treatment was found to be beneficial to compensate this defect level. The admittance measurement showed a shift of the shallow energy position to a higher value after HLS and subsequent HS treatments, irrespective of Cs incorporation. This is expected to be due to the formation of a secondary diode toward the CIGS/molybdenum contact. The positive and negative effects of HLS and subsequent HS treatments on CsF-treated CIGS solar cell are discussed using low-temperature C–V measurements. By optimizing the HLS and HS processes, CsF-treated CIGS solar cells yielded total efficiencies of over 20%.

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