Journal
CHEMISTRY LETTERS
Volume 52, Issue 5, Pages 393-396Publisher
CHEMICAL SOC JAPAN
DOI: 10.1246/cl.230076
Keywords
Perovskite solar cell; Crystal growth; Copper thiocyanate
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To enhance the photovoltaic performance of perovskite solar cells, LiSCN was doped into CuSCN hole-transport layers. The LiSCN-doped CuSCN showed a dense and flat surface morphology and improved crystallinity and electrical conductivity. The power conversion efficiency of the solar cells was increased from 6.68% to 9.00% with LiSCN doping of CuSCN.
To enhance the photovoltaic performance of perovskite solar cells, LiSCN was doped to CuSCN hole-transport layers. The LiSCN-doped CuSCN exhibited a dense and flat surface morphology and had improved crystallinity and electrical con-ductivity. LiSCN doping of CuSCN enhanced the power con-version efficiency of the solar cells from 6.68% to 9.00%.
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