Reversible Phase Transition for Durable Formamidinium-Dominated Perovskite Photovoltaics

Huifen Liu, Nengxu Li, Zehua Chen, Shuxia Tao, Chunlei Li, Lang Jiang, Xiuxiu Niu, Qi Chen, Feng Wang, Yu Zhang, Zijian Huang, Tinglu Song, Huanping Zhou*

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摘要

Phase instability is one of the major obstacles to the wide application of formamidinium (FA)-dominated perovskite solar cells (PSCs). An in-depth investigation on relevant phase transitions is urgently needed to explore more effective phase-stabilization strategies. Herein, the reversible phase-transition process of FA1−xCsxPbI3 perovskite between photoactive phase (α phase) and non-photoactive phase (δ phase) under humidity, as well as the reversible healing of degraded devices, is monitored. Moreover, through in situ atomic force microscopy, the kinetic transition between α and δ phase is revealed to be the “nucleation–growth transition” process. Density functional theory calculation implies an enthalpy-driven α-to-δ degradation process during humidity aging and an entropy-driven δ-to-α healing process at high temperatures. The α phase of FA1−xCsxPbI3 can be stabilized at elevated temperature under high humidity due to the increased nucleation barrier, and the resulting non-encapsulated PSCs retain >90% of their initial efficiency after >1000 h at 60 °C and 60% relative humidity. This finding provides a deepened understanding on the phase-transition process of FA1−xCsxPbI3 from both thermodynamics and kinetics points of view, which also presents an effective means to stabilize the α phase of FA-dominated perovskites and devices for practical applications.

源语言英语
文章编号2204458
期刊Advanced Materials
34
39
DOI
出版状态已出版 - 28 9月 2022

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Liu, H., Li, N., Chen, Z., Tao, S., Li, C., Jiang, L., Niu, X., Chen, Q., Wang, F., Zhang, Y., Huang, Z., Song, T., & Zhou, H. (2022). Reversible Phase Transition for Durable Formamidinium-Dominated Perovskite Photovoltaics. Advanced Materials, 34(39), 文章 2204458. https://doi.org/10.1002/adma.202204458