Tailoring Defects Regulation in Air-Fabricated CsPbI3 for Efficient Inverted All-Inorganic Perovskite Solar Cells with Voc of 1.225 V. 2022

Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

Air fabrication of CsPbI3 perovskite photovoltaics has been attractive and fast-moving owing to its compatibility to low-cost and up-scalable fabrication. However, due to the inevitable erosions, undesirable traps are formed in air-fabricated CsPbI3 crystals and seriously hinder photovoltaic performance with poor reproduction. Here, 3, 5-difluorobenzoic acid hydrazide (FBJ) is incorporated as trap regulation against external erosions in air-fabricated CsPbI3. Theoretical simulations reveal that FBJ molecules feature stronger absorbance on CsPbI3 than water, which can regulate trap formations for water erosions. In addition, FBJ with solid bonding interaction to CsPbI3 can enlarge formation energy of various defects during crystallization and further suppress traps. Moreover, profiling to reductive hydrazine groups, FBJ inhibits traps for oxidation erosions. Consequently, a champion efficiency of 19.27% with an impressive Voc of 1.225 V is realized with the inverted CsPbI3 devices. Moreover, the optimized devices present superior stability and contain 97.4% after operating at 60 °C for 600 h.

UI MeSH Term Description Entries

Related Publications

Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
July 2023, Chemical communications (Cambridge, England),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
February 2024, Journal of the American Chemical Society,
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
August 2020, Advanced materials (Deerfield Beach, Fla.),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
April 2023, Science (New York, N.Y.),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
August 2023, Advanced materials (Deerfield Beach, Fla.),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
August 2020, Angewandte Chemie (International ed. in English),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
February 2020, Advanced materials (Deerfield Beach, Fla.),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
July 2022, Angewandte Chemie (International ed. in English),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
March 2022, Advanced materials (Deerfield Beach, Fla.),
Sheng Fu, and Nannan Sun, and Jiabo Le, and Wenxiao Zhang, and Renjie Miao, and Wenjun Zhang, and Yongbo Kuang, and Weijie Song, and Junfeng Fang
December 2016, Journal of the American Chemical Society,
Copied contents to your clipboard!