材料科学
卟啉
有机太阳能电池
单层
衍生工具(金融)
分子
能量转换效率
阳极
光伏
胺气处理
光伏系统
纳米技术
光电子学
化学工程
混合太阳能电池
工作(物理)
光化学
有机分子
复合数
有机电子学
太阳能电池
自组装单层膜
小分子
自组装
功率(物理)
聚合物太阳能电池
作者
Shitao Guan,Lanhe Yang,Yijie Li,Chenfei Zhu,Yibo Kong,Xiaoyi Xu,Mengting Wang,Lijian Zuo,Ning Huang,Hongzheng Chen
摘要
ABSTRACT Although the prevailing self‐assembly monolayers (SAMs) have been proved effective in improving device performance, e.g., power conversion efficiency (PCE) exceeding 20% in organic photovoltaics (OPVs), their unstable chemical structures and/or insufficient anode coverage lead to severe efficacy issues. Herein, we introduce a fluorinated porphyrin derivative with amine groups (F‐Por) as to control the packing of SAMs via interlocking the adjacent molecules to form laterally constrained and vertically ordered topology. Consequently, the device efficiency, operation stability, and environmental adaptivity are simultaneously reinforced, due to the improved work function, molecular arrangement, and charge transport of SAMs. In particular, the optimized devices comprising composite SAM and F‐Por delivers a PCE of 20.25% and a T 80 lifetime of 585 h under continuous operation. Therefore, this work provides a valuable design paradigm for the development of high‐performance, operational stable and environmentally adaptive organic optoelectronic devices toward practical applications.
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