Chemical Bond Management of FA-Based Mixed Halide Perovskites for Stable and High-Efficiency Solar Cells

Na Liu*, Shuyan Chen, Xingyu Liu, Cheng Zhu, Fan Xu, Tinglu Song, Wanqing Cai, Yuqun Jiang, Xuan Zhang, Roman B. Vasiliev, Shuai Chang, Shukui Li, Qi Chen, Guodan Wei*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The unavoidable migration of organic cation within formamidinium (FA)-based mixed halide perovskite leads to severe phase segregation and device degradation. The intrinsic weak chemical bond between organic cation and [PbI6]4− octahedra can easily break during device operation, resulting in the formation of cation vacancies and undesirable structural transformation. In this work, a pyrrolidine compound is incorporated, with a strong electron-withdrawing fluorine substitution, which strengthened the lattice bond between organic cation and [PbI6]4− octahedra. Meanwhile, the 1D/3D heterojunction films are also achieved due to the chemical reaction between PbI2 and pyrrolidine, successfully constructing a new 1D perovskite such as PYFPbI3. The resultant hetero-perovskite films retained their photoactive-α phase even after eight days of ambient exposure, demonstrating superior phase stability without any post-encapsulation. More importantly, the ion-migration channels inside the perovskite lattice are effectively blocked by 1D/3D heterojunctions. The resultant rigid and flexible solar cells exhibited an enhanced power conversion efficiency (PCE) from the initial 24.48% to 25.39%, as well as 23.86% to 24.26%, respectively, which are among the highest records in 1D/3D-based works. Furthermore, the unencapsulated devices retained 90% of their initial PCE during maximum power point tracking for over 350 hours under continuous illuminations.

源语言英语
期刊Advanced Energy Materials
DOI
出版状态已接受/待刊 - 2025

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Liu, N., Chen, S., Liu, X., Zhu, C., Xu, F., Song, T., Cai, W., Jiang, Y., Zhang, X., Vasiliev, R. B., Chang, S., Li, S., Chen, Q., & Wei, G. (已接受/印刷中). Chemical Bond Management of FA-Based Mixed Halide Perovskites for Stable and High-Efficiency Solar Cells. Advanced Energy Materials. https://doi.org/10.1002/aenm.202405212