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利用准二维卤化物钙钛矿中自发电子和空穴分离的高性能柔性自供电光电探测器。

High-Performance Flexible Self-Powered Photodetectors Utilizing Spontaneous Electron and Hole Separation in Quasi-2D Halide Perovskites.

作者信息

Lai Zhengxun, Meng You, Zhu Qi, Wang Fei, Bu Xiuming, Li Fangzhou, Wang Wei, Liu Chuntai, Wang Feng, Ho Johnny C

机构信息

Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, 999077, Hong Kong SAR.

State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, 130021, China.

出版信息

Small. 2021 Jun;17(23):e2100442. doi: 10.1002/smll.202100442. Epub 2021 Apr 23.

Abstract

Although there are recent advances in many areas of quasi-2D halide perovskites, photodetectors based on these materials still cannot achieve satisfactory performance for practical applications where high responsivity, fast response, self-powered nature, and excellent mechanical flexibility are urgently desired. Herein, utilizing one-step spin-coating method, self-assemble quasi-2D perovskite films with graded phase distribution in the order of increasing number of metal halide octahedral layers are successfully prepared. Gradient type-II band alignments along the out-of-plane direction of perovskites with spontaneous separation of photo-generated electrons and holes are obtained and then employed to construct self-powered vertical-structure photodetectors for the first time. Without any driving voltage, the device exhibits impressive performance with the responsivity up to 444 mA W and ultrashort response time down to 52 µs. With a bias voltage of 1.5 V, the device responsivity becomes 3463 mA W with the response speed as fast as 24 µs. Importantly, the device's mechanical flexibility is greatly enhanced since the photocurrent prefers flowing through the metal halide octahedral layers between the top and bottom contact electrodes in the vertical device structure, being more tolerant to film damage. These results evidently indicate the potential of graded quasi-2D perovskite phases for next-generation optoelectronic devices.

摘要

尽管在准二维卤化物钙钛矿的许多领域都有了最新进展,但基于这些材料的光电探测器在实际应用中仍无法实现令人满意的性能,而这些实际应用迫切需要高响应度、快速响应、自供电特性和出色的机械柔韧性。在此,利用一步旋涂法,成功制备了具有分级相分布的自组装准二维钙钛矿薄膜,其金属卤化物八面体层数按递增顺序排列。获得了沿钙钛矿平面外方向的梯度II型能带排列以及光生电子和空穴的自发分离,然后首次用于构建自供电垂直结构光电探测器。在没有任何驱动电压的情况下,该器件表现出令人印象深刻的性能,响应度高达444 mA/W,超短响应时间低至52 μs。在1.5 V的偏置电压下,器件响应度变为3463 mA/W,响应速度快至24 μs。重要的是,该器件的机械柔韧性大大增强,因为光电流更倾向于在垂直器件结构中的顶部和底部接触电极之间的金属卤化物八面体层中流动,对薄膜损伤更具耐受性。这些结果明显表明分级准二维钙钛矿相在下一代光电器件中的潜力。

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