材料科学
异质结
钙钛矿(结构)
太阳能电池
光电子学
能量转换效率
铋
带隙
混合太阳能电池
全色胶片
卤化物
吸收(声学)
锑
聚合物太阳能电池
化学
无机化学
光学
有机化学
物理
图像分辨率
冶金
复合材料
作者
Anupriya Singh,Po‐Ting Lai,Anisha Mohapatra,Chien‐Yu Chen,Hao‐Wu Lin,Yu‐Jung Lu,Chih‐Wei Chu
标识
DOI:10.1016/j.cej.2021.129424
摘要
The search for stable alternative lead-free perovskites has identified all-inorganic antimony/bismuth halide derivatives as promising materials. Despite attractive optoelectronic properties, their wider band gaps and poor morphological control have greatly limited their solar device performance. In this study, we used the indacenodithiophene-based organic acceptor (ITIC) as a Lewis base to improve the morphology of Cs3Sb2I9 films and also as an electron transport layer to form a complimentary heterojunction, and, thereby, enhance the performance of Cs3Sb2I9 solar cells. The presence of cyano and carbonyl groups in ITIC modulated the rate of crystallization of Cs3Sb2I9 and improved its optoelectronic properties. The panchromatic absorption of the Cs3Sb2I9/ITIC heterostructure provided a power conversion efficiency of 3.25% in inverted solar cell structure under 1-sun irradiation. This enhanced performance when using a complimentary absorption strategy suggests a new pathway for developing wider-band-gap lead-free perovskite derivatives for solar cell applications. Moreover, the optimized Cs3Sb2I9/ITIC heterostructure–based solar cell achieved a PCE of 9.2% under indoor illumination at 1000 lx, highlighting the potential use of such devices in indoor applications.
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