钙钛矿(结构)
结晶
材料科学
成核
化学工程
卤化物
相(物质)
聚合
碘化物
能量转换效率
聚合物
碘化氢
Crystal(编程语言)
化学
无机化学
光电子学
有机化学
复合材料
冶金
程序设计语言
碘
工程类
计算机科学
作者
Mubai Li,Riming Sun,Jingxi Chang,Jingjin Dong,Qiushuang Tian,Hongze Wang,Zihao Li,Pinghui Yang,Haokun Shi,Chao Yang,Zichao Wu,Renzhi Li,Yingguo Yang,Aifei Wang,Shitong Zhang,Fangfang Wang,Wei Huang,Tianshi Qin
标识
DOI:10.1038/s41467-023-36224-6
摘要
Incorporating mixed ion is a frequently used strategy to stabilize black-phase formamidinum lead iodide perovskite for high-efficiency solar cells. However, these devices commonly suffer from photoinduced phase segregation and humidity instability. Herein, we find that the underlying reason is that the mixed halide perovskites generally fail to grow into homogenous and high-crystalline film, due to the multiple pathways of crystal nucleation originating from various intermediate phases in the film-forming process. Therefore, we design a multifunctional fluorinated additive, which restrains the complicated intermediate phases and promotes orientated crystallization of α-phase of perovskite. Furthermore, the additives in-situ polymerize during the perovskite film formation and form a hydrogen-bonded network to stabilize α-phase. Remarkably, the polymerized additives endow a strongly hydrophobic effect to the bare perovskite film against liquid water for 5 min. The unencapsulated devices achieve 24.10% efficiency and maintain >95% of the initial efficiency for 1000 h under continuous sunlight soaking and for 2000 h at air ambient of ~50% humid, respectively.
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