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用于大规模生产的高性能钙钛矿太阳能电池在环境空气中的湿气加速前驱体结晶

Moisture-Accelerated Precursor Crystallisation in Ambient Air for High-Performance Perovskite Solar Cells toward Mass Production.

作者信息

Fan Weili, Deng Kaimo, Shen Ying, Bai Yang, Li Liang

机构信息

Beijing Advanced Innovation Center for Materials Genome Engineering, Institute for Advanced Materials and Technology, University of Science and Technology, Beijing, 100083, P. R. China.

School of Physical Science and Technology, Jiangsu Key Laboratory of Thin Films, Soochow University, Suzhou, 215006, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2022 Oct 17;61(42):e202211259. doi: 10.1002/anie.202211259. Epub 2022 Sep 15.

Abstract

Phase-pure crystallised perovskite is considered an excellent precursor for fabricating high-stability perovskite films with minimal defects. However, currently available protocols for synthesising crystallised perovskites must be conducted in an inert atmosphere or in the presence of an organic solvent as the reaction medium, which hinders mass production. Here, we report the fast synthesis of α-phase-crystallised perovskite powder assisted by moisture in ambient air. Moisture can promote the reaction between PbI and organic salts and facilitate complete phase transition, as demonstrated in a joint experimental and theoretical study. Perovskite solar cells with a power conversion efficiency of 24.07 % were achieved using phase-pure crystallised perovskite powder as the precursor. This ambient-air-compatible method opens new vistas to reproducible high-quality precursors for large-scale photovoltaic applications.

摘要

纯相结晶钙钛矿被认为是制备具有最小缺陷的高稳定性钙钛矿薄膜的优异前驱体。然而,目前用于合成结晶钙钛矿的方法必须在惰性气氛中或在有机溶剂作为反应介质的存在下进行,这阻碍了大规模生产。在此,我们报道了在环境空气中水分辅助下快速合成α相结晶钙钛矿粉末。如联合实验和理论研究所表明的,水分可促进PbI与有机盐之间的反应并促进完全相变。使用纯相结晶钙钛矿粉末作为前驱体实现了功率转换效率为24.07%的钙钛矿太阳能电池。这种与环境空气兼容的方法为大规模光伏应用的可重复高质量前驱体开辟了新前景。

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