材料科学
三碘化物
钙钛矿(结构)
钝化
单晶
Crystal(编程语言)
表面改性
卤化物
光电子学
纳米技术
化学工程
图层(电子)
结晶学
无机化学
物理化学
化学
色素敏化染料
程序设计语言
电极
计算机科学
电解质
工程类
作者
Xinbo Guo,Ning Li,Yushu Xu,Jianfu Zhao,Fucai Cui,Yimu Chen,Xiaoyan Du,Qinghai Song,Shouxin Zhang,Xiao Cheng,Xutang Tao,Zhaolai Chen
标识
DOI:10.1002/adfm.202213995
摘要
Abstract Metal halide perovskite single crystals are promising for diverse optoelectronic applications due to their outstanding properties. In comparison to the bulk, the crystal surface suffers from high defect density and is moisture sensitive; however, surface modification strategies of perovskite single crystals are relatively deficient. Herein, solar cells based on methylammonium lead triiodide (MAPbI 3 ) thin single crystals are selected as a prototype to improve single‐crystal perovskite devices by surface modification. The surface trap passivation and protection against moisture of MAPbI 3 thin single crystals are achieved by one bifunctional molecule 3‐mercaptopropyl(dimethoxy)methylsilane (MDMS). The sulfur atom of MDMS can coordinate with bare Pb 2+ of MAPbI 3 single crystals to reduce surface defect density and nonradiative recombination. As a result, the modified devices show a remarkable efficiency of 22.2%, which is the highest value for single‐crystal MAPbI 3 solar cells. Moreover, MDMS modification mitigates surface ion migration, leading to enhanced reverse‐bias stability. Finally, the cross‐link of silane molecules forms a protective layer on the crystal surface, which results in enhanced moisture stability of both materials and devices. This work provides an effective way for surface modification of perovskite single crystals, which is important for improving the performance of single‐crystal perovskite solar cells, photodetectors, X‐ray detectors, etc.
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