Journal of Semiconductors, Volume. 44, Issue 1, 010201(2023)
The degradation of perovskite precursor
Fig. 1. (Color online) (a) Deprotonation of MA+ and FA+. Reproduced with permission[14], Copyright 2021, American Chemical Society. (b) The addition-elimination reaction of MA and FAI in perovskite precursor solution. Reproduced with permission[13], Copyright 2020, Elsevier. (c) The amine-cation reactions between MA and FA+ and between FA and MA+. Gibbs free energy profiles for MA−FA+ reaction (d) and FA−MA+ reaction (e). Reproduced with permission[14], Copyright 2022, American Chemical Society.
Fig. 2. (Color online) (a) Photos for solutions with and without DHP. Reproduced with permission[16], Copyright 2022, Wiley. (b) Mechanism for S8 to stabilize precursor solution. Reproduced with permission[18], Copyright 2019, Wiley. (c) Photos for films from precursor solution with and without ITIC-Th. Reproduced with permission[19], Copyright 2018, Wiley. (d) Schiff-base reaction between organic amine and aldehyde. Reproduced with permission[14], Copyright 2021, American Chemical Society. (e) Schematic for BHC reducing I2/I3– to I– during the ageing of solution. Reproduced with permission[15], Copyright 2021, Science (AAAS). (f) Mechanism for 3-HBA to inhibit the degradation of perovskite precursor solution. Reproduced with permission[22], Copyright 2022, Wiley.
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Mengjia Li, Lixiu Zhang, Cong Chen, Jiangzhao Chen, Liming Ding. The degradation of perovskite precursor[J]. Journal of Semiconductors, 2023, 44(1): 010201
Category: Articles
Received: Oct. 19, 2022
Accepted: --
Published Online: Feb. 22, 2023
The Author Email: Chen Cong (chencong@hebut.edu.cn), Chen Jiangzhao (jiangzhaochen@cqu.edu.cn), Ding Liming (ding@nanoctr.cn)