材料科学
钙钛矿(结构)
红外线的
探测器
单晶
辐射
光电子学
光学
化学工程
核磁共振
物理
工程类
作者
Lixiang Wang,Yilong Song,Jing Wang,Weihui Bi,Ding Li,Hui Liu,Xueying Yang,Yingqi Wang,Shuai Yuan,Qingfeng Dong,Deren Yang,Yanjun Fang
标识
DOI:10.1021/acsami.4c06568
摘要
Radiation detectors based on metal halide perovskite (MHP) single crystals (SCs) have exhibited exceptional sensitivity, low detection limit, and remarkable energy resolution. However, the operational stability issue still dramatically impedes their commercialization due to degradation induced by high-energy irradiation and large bias. Here, we propose an innovative infrared healing strategy to restore the devices that have undergone severe damage from both long-term biasing and X-ray irradiation. Compared to the slow and inefficient intrinsic self-healing process of MHPs, the infrared healing method demonstrates the capacity to achieve rapid recovery of the detection performance of the degraded devices within just 1 h. We reveal that the healing mechanism is mainly related to the reduction of the ion-migration activation energy in MHP SCs under infrared illumination, which promotes the back diffusion of the displaced ions to their original lattice positions and remedies defects. Finally, the healing effect is further confirmed through the gamma-ray spectroscopy acquisition with degraded MHP SCs, whose energy resolution at 59.5 keV of
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