光激发
响应度
钝化
材料科学
钙钛矿(结构)
光电探测器
光电子学
兴奋剂
超短脉冲
激发态
纳米技术
光学
图层(电子)
原子物理学
化学工程
激光器
物理
工程类
作者
Yunfan Yue,Nianyao Chai,Mingyu Li,Zhongle Zeng,Sheng Li,Xiangyu Chen,Jiakang Zhou,Huan Wang,Xuewen Wang
标识
DOI:10.1002/adma.202407347
摘要
Abstract Quasi‐2D perovskites exhibit great potential in photodetectors due to their exceptional optoelectronic responsivity and stability, compared to their 3D counterparts. However, the defects are detrimental to the responsivity, response speed, and stability of perovskite photodetectors. Herein, an ultrafast photoexcitation‐induced passivation technique is proposed to synergistically reduce the dimensionality at the surface and induce oxygen doping in the bulk, via tuning the photoexcitation intensity. At the optimal photoexcitation level, the excited electrons and holes generate stretching force on the Pb─I bonds at the interlayered [PbI 6 ] − , resulting in low dimensional perovskite formation, and the absorptive oxygen is combined with I vacancies at the same time. These two induced processes synergistically boost the carrier transport and interface contact performance. The most outstanding device exhibits a fast response speed with rise/decay time of 201/627 ns, with a peak responsivity/detectivity of 163 mA W −1 /4.52 × 10 10 Jones at 325 nm and the enhanced cycling stability. This work suggests the possibility of a new passivation technique for high performance 2D perovskite optoelectronics.
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