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消除用于超灵敏和稳定X射线探测器阵列的钙钛矿单晶中界面电化学反应诱导的极化

Elimination of Interfacial-Electrochemical-Reaction-Induced Polarization in Perovskite Single Crystals for Ultrasensitive and Stable X-Ray Detector Arrays.

作者信息

Song Yilong, Li Liqi, Hao Mingwei, Bi Weihui, Wang Anran, Kang Yifei, Li Hanming, Li Xiaohui, Fang Yanjun, Yang Deren, Dong Qingfeng

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.

State Key Laboratory of Silicon Materials and School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, P. R. China.

出版信息

Adv Mater. 2021 Dec;33(52):e2103078. doi: 10.1002/adma.202103078. Epub 2021 Oct 22.

Abstract

Organic-inorganic halide perovskites have exhibited bright prospects in high-sensitivity X-ray detection. However, they generally suffer from the severe field-driven polarization issue that remarkably deteriorates the detection performance. Here, it is demonstrated that the interfacial electrochemical reaction between Au electrodes and halogen in MAPbI single crystals (SCs) is the major source of the dark current polarization in the metal-semiconductor-metal (MSM)-structured perovskite X-ray detectors at the initial stage of biasing. By introducing the p- and n-type charge transport layers to isolate the electrodes from contacting the SC surface, the polarization is fully eliminated under a large electric field up to 1000 V cm . Moreover, the resultant lateral p-i-n heterojunction suppresses the dark current of the devices by nearly 3 orders of magnitude as compared to the MSM counterparts and therefore enables a high sensitivity of 5.2 × 10  µC Gy cm and a record low X-ray detection limit down to 0.1 nGy s . The excellent biasing stability and sensitivity of the devices allow to prepare the linear detector arrays for X-ray imaging applications.

摘要

有机-无机卤化物钙钛矿在高灵敏度X射线检测中展现出了光明前景。然而,它们通常存在严重的场驱动极化问题,这显著降低了检测性能。在此,研究表明,在偏置初始阶段,金电极与MAPbI单晶(SCs)中的卤素之间的界面电化学反应是金属-半导体-金属(MSM)结构钙钛矿X射线探测器中暗电流极化的主要来源。通过引入p型和n型电荷传输层来使电极与SC表面隔离,在高达1000 V/cm的大电场下,极化被完全消除。此外,与MSM结构的器件相比,所得的横向p-i-n异质结使器件的暗电流降低了近3个数量级,因此实现了5.2×10 µC Gy cm的高灵敏度以及低至0.1 nGy s的创纪录低X射线检测限。器件出色的偏置稳定性和灵敏度使得能够制备用于X射线成像应用的线性探测器阵列。

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