钝化
聚酰亚胺
光伏
钙钛矿(结构)
能量转换效率
材料科学
图层(电子)
量子隧道
传输层
工作职能
光电子学
接口(物质)
光伏系统
纳米技术
化学工程
电气工程
复合材料
工程类
毛细管作用
毛细管数
作者
Chunming Liu,Wei Yu,Yuheng Li,Li Wang,Zilong Zhang,Chi Li,Lusheng Liang,Kangcheng Chen,Lin Liu,Tinghao Li,Xuteng Yu,Yao Wang,Peng Gao
标识
DOI:10.1002/anie.202402904
摘要
Abstract Despite the remarkable progress of perovskite solar cells (PSCs), challenges remain in terms of finding effective and viable strategies to enhance their long‐term stability while maintaining high efficiency. In this study, a new insulating and hydrophobic fluorinated polyimide (FPI: 6FDA‐6FAPB) was used as the interface layer between the perovskite layer and the hole transport layer (HTL) in PSCs. The functional groups of FPI play a pivotal role in passivating interface defects within the device. Due to its high work function, FPI demonstrates field‐effect passivation (FEP) capabilities as an interface layer, effectively mitigating non‐radiative recombination at the interface. Notably, the FPI insulating interface layer does not impede carrier transmission at the interface, which is attributed to the presence of hole tunneling effects. The optimized PSCs achieve an outstanding power conversion efficiency (PCE) of 24.61 % and demonstrate excellent stability, showcasing the efficacy of FPI in enhancing device performance and reliability.
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