Stabilizing black-phase formamidinium perovskite formation at room temperature and high humidity

The stabilization of black-phase formamidinium lead iodide (α-FAPbI ) perovskite under various environmental conditions is considered necessary for solar cells. However, challenges remain regarding the temperature sensitivity of α-FAPbI and the requirements for strict humidity control in its process...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2021-03, Vol.371 (6536), p.1359-1364
Hauptverfasser: Hui, Wei, Chao, Lingfeng, Lu, Hui, Xia, Fei, Wei, Qi, Su, Zhenhuang, Niu, Tingting, Tao, Lei, Du, Bin, Li, Deli, Wang, Yue, Dong, He, Zuo, Shouwei, Li, Bixin, Shi, Wei, Ran, Xueqin, Li, Ping, Zhang, Hui, Wu, Zhongbin, Ran, Chenxin, Song, Lin, Xing, Guichuan, Gao, Xingyu, Zhang, Jing, Xia, Yingdong, Chen, Yonghua, Huang, Wei
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Sprache:eng
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Zusammenfassung:The stabilization of black-phase formamidinium lead iodide (α-FAPbI ) perovskite under various environmental conditions is considered necessary for solar cells. However, challenges remain regarding the temperature sensitivity of α-FAPbI and the requirements for strict humidity control in its processing. Here we report the synthesis of stable α-FAPbI , regardless of humidity and temperature, based on a vertically aligned lead iodide thin film grown from an ionic liquid, methylamine formate. The vertically grown structure has numerous nanometer-scale ion channels that facilitate the permeation of formamidinium iodide into the lead iodide thin films for fast and robust transformation to α-FAPbI A solar cell with a power-conversion efficiency of 24.1% was achieved. The unencapsulated cells retain 80 and 90% of their initial efficiencies for 500 hours at 85°C and continuous light stress, respectively.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abf7652