钝化
材料科学
钙钛矿(结构)
光电探测器
响应度
光电子学
量子效率
比探测率
单层
图层(电子)
降级(电信)
离子
载流子寿命
薄膜
纳米技术
作者
Wenxuan Yang,Dong Li,L. Y. Pang,Wenjie Luo,Ting Xue,Xingzhou Su,Kelin Chen,Chen Wang,Yang Zhang,Xiaoli Wang,Xiaoli Wang,Wenbo Peng,Xingzhu Wang,Xingzhu Wang,Wenhua Zhou,Yanliang Liu,Baomin Xu
标识
DOI:10.1002/adfm.202531353
摘要
ABSTRACT Although quasi‐2D perovskites show promise for photodetection, their high surface defect density severely limits optoelectronic performance and operational stability. Herein, we engineered quasi‐2D PEA 2 MA 2 Pb 3 I 10 films with dual‐surface passivation using 1‐adamantanemethylamine (AdMA) and [2‐(9H‐carbazol‐9‐yl)ethyl]phosphonic acid (Me‐4PACz) self‐assembled monolayers (SAMs) as top/bottom surface modifiers, respectively, yielding high‐performance perovskite photodetectors with exceptional stability. The dual‐SAM layer not only reduces the defect density of perovskite film from 3.39 × 10 22 to 2.14 × 10 22 m −3 but also suppresses ion migration with improved ion migration activation energy from 0.0196 to 0.0405 eV. The optimized quasi‐2D perovskite photodetector exhibited remarkable performance with a high external quantum efficiency (EQE) of 64%, a responsivity of 0.26 A/W, an outstanding specific detectivity of 4.98 × 10 13 Jones, and excellent stability‐showing no measurable degradation after 10 000 light‐dark operational cycles in ambient air. This study provides fundamental insights into the role of SAMs in modulating the surface properties of 2D perovskites and offers a promising pathway for developing high‐performance optoelectronic devices.
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