Suppressing Fluoride Segregation for High Efficiency Tin Perovskite Solar Cells

材料科学 氟化物 钙钛矿(结构) 化学工程 工程物理 光电子学 纳米技术 冶金 无机化学 工程类 化学
作者
Mingyu Ma,Xianyuan Jiang,Zihao Zang,Wen Xin,Wei Zhou,Haobo Wu,Si Peng,Yun-Long Liu,Hansheng Li,Danni Yu,Hao Liang,Hao Wang,Wenjia Zhou,Zhenhuang Su,Fan Zheng,Xingyu Gao,Alexei V. Emeline,Constantinos C. Stoumpos,Zhijun Ning
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:34 (44) 被引量:3
标识
DOI:10.1002/adfm.202407095
摘要

Abstract Phase segregation can bring low crystallinity and orientation, giving rise to poor carrier transport and high defect density, leading to poor device performance. In order to reduce oxidation and defect density and regulate film growth, lots of reductive additives such as SnF 2 are explored as additives in tin perovskite film growth. Despite the oxidation is effectively reduced, it induces phase segregation. Herein, a reductive molecule NH 5 F 2 with a bi‐fluoride anion is explored to address this challenge for tin perovskite solar cells. This bi‐fluoride anion reduces coordination energy with Sn 2+ compared to SnF 2 , hence the byproduct of [F─H─F] − can be eliminated during the film annealing process, effectively preventing fluoride segregation. As a result, a highly oriented perovskite film with reduced oxidation is fabricated. The film shows reduced defect density and carrier recombination, leading to improved current density. Consequently, a tin‐based perovskite solar cell with an efficiency of 15.04% is fabricated, ranking as one of the highest efficiencies reported up to now.
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