Inorganic wide-bandgap perovskite subcells with dipole bridge for all-perovskite tandems

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作者
Tiantian Li
Jian Xu
Renxing Lin
Sam Teale
Hongjiang Li
Zhou Liu
Chenyang Duan
Qian Zhao
Ke Xiao
Pu Wu
Bin Chen
Sheng Jiang
Shaobing Xiong
Haowen Luo
Sushu Wan
Ludong Li
Qinye Bao
Yuxi Tian
Xueping Gao
Jin Xie
Edward H. Sargent
Hairen Tan
机构
[1] Nanjing University,National Laboratory of Solid State Microstructures, College of Engineering and Applied Sciences, Frontiers Science Center for Critical Earth Material Cycling
[2] Nankai University,School of Materials Science and Engineering
[3] University of Toronto,Department of Electrical and Computer Engineering
[4] East China Normal University,School of Physics and Electronic Science
[5] Nanjing University,School of Chemistry and Chemical Engineering
来源
Nature Energy | 2023年 / 8卷
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摘要
Operating stability has become a priority issue for all-perovskite tandem solar cells. Inorganic CsPbI3−xBrx perovskites, which have good photostability against halide segregation, are promising alternatives for all-perovskite tandem solar cells. However, the interface between organic transport layers and inorganic perovskite suffers from a large energetic mismatch and inhibits charge extraction compared with hybrid analogues, resulting in low open-circuit voltages and fill factors. Here we show that inserting at this interface a passivating dipole layer having high molecular polarity—a molecule that interacts strongly with both inorganic perovskite and C60—reduces the energetic mismatch and accelerates the charge extraction. This strategy resulted in a power conversion efficiency (PCE) of 18.5% in wide-bandgap (WBG) devices. We report all-perovskite tandems using an inorganic WBG subcell, achieving a PCE of 25.6% (steady state 25.2%). Encapsulated tandems retain 96% of their initial performance after 1,000 h of simulated 1-sun operation at the maximum power point.
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页码:610 / 620
页数:10
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