학술논문

Effect of Ag Alloying on Device Performance of Flexible CIGSe Thin-film Solar Cells Using Stainless Steel Substrates
Document Type
Academic Journal
Source
Current Photovoltaic Research. 2023-03 11(1):8-12
Subject
Flexible solar cells
Stainless steel substrate
Ag alloying
Alkali post-deposition treatment
Language
Korean
ISSN
2288-3274
2508-125X
Abstract
In this work, we investigated the thickness of Ag precursor layer to improve the performance of flexible CIGSe solar cells grown on stainless steel (STS) substrates through three-stage co-evaporation with Ga grading followed by alkali treatments. The small amount of incorporated Ag in CIGSe films showed enhancement in the grain size and device efficiency. With an optimal 6 nm-thick Ag layer, the best cell on the STS substrate yielded more than 16%, which is comparable to the soda-lime glass (SLG) substrate. Thus, the addition of controlled Ag combined with alkali post-deposition treatment (PDT) led to increased open-circuit voltage (VOC), accompanied by the increased built-in potential as confirmed by capacitance-voltage (C-V) measurements. It is related to a reduction of charge recombination at the depletion region. The results suggest that Ag alloying and alkali PDT are essential for producing highly efficient flexible CIGSe solar cells.

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