材料科学
钙钛矿(结构)
甲脒
冠醚
铯
结晶
水分
光伏系统
制作
相(物质)
纳米技术
化学工程
无机化学
复合材料
有机化学
化学
病理
离子
工程类
生物
医学
替代医学
生态学
作者
Ruihao Chen,Yazhuo Wu,Yongke Wang,Ruchao Xu,Ruiqin He,Yangtao Fan,Xiaofeng Huang,Jun Yin,Binghui Wu,Jing Li,Nanfeng Zheng
标识
DOI:10.1002/adfm.202008760
摘要
Abstract FACs‐based (FA + , formamidinium and Cs + , cesium) perovskite solar cells have gained great attention due to their remarkable light and thermal stabilities toward practical application of perovskite modules. However, the moisture instability and difficulty in scalable fabrication are still the main obstacles blocking their photovoltaic applications in current status. Here, the employment of novel interaction between crown ether with metal cations is introduced to tailor the uniform growth and inhibit moisture invasion during the crystallization of α‐phase FACsPbI 3 , yielding the successful synthesis of high‐quality perovskite films in a large scale. Consequently, perovskite solar cells (PSC) modules in the total area of 4 × 4 and 10 × 10 cm 2 are readily fabricated with respective champion efficiencies of 16.69% and 13.84% and excellent stability over 1000 h. This facile scaling‐up strategy assisted by crown ether has shown great promise for pursuing efficient and highly stable large‐area PSC modules.
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