质子
探测器
辐照
通量
材料科学
辐射
光电子学
辐射耐受性
光学
钙钛矿(结构)
物理
核物理学
化学
医学
结晶学
内科学
放射治疗
作者
Huaqing Huang,Linxin Guo,Yunbiao Zhao,Shengyuan Peng,Wenjun Ma,Xinwei Wang,Jianming Xue
标识
DOI:10.1021/acsaelm.2c01406
摘要
Proton detection has attracted immense interest recently, owing to the increasing demands for applications in physics, medicine, and space. However, the proton detectors suffer from a general problem of performance degradation caused by the proton irradiation-induced defects over long-term operation. Herein, we report a proton detector based on the methylammonium lead tribromide (MAPbBr3) perovskite single crystal, which exhibits remarkable radiation tolerance. The detector can monitor the fluence rate and dose quantitatively up to a high dose of 45 kGy with a fairly low bias electric field (0.01 V μm–1). Further increasing the dose to 1 MGy (7.3 × 1013 p cm–2) results in the detector dark current degrading gradually, but the dark current can rapidly recover at room temperature in a few hours after irradiation, showing a desirable self-healing characteristic, which can further enhance the radiation tolerance of the detector. These results show that this perovskite-based proton detector is highly promising for future applications in proton therapy, proton radiography, and so forth.
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