All-Vacuum-Deposited Perovskite X-ray Detector with a Record-High Self-Powered Sensitivity of 1.2 C Gy–1 cm–3

钙钛矿(结构) 材料科学 X射线探测器 探测器 制作 光电子学 沉积(地质) 灵敏度(控制系统) 光学 物理 结晶学 化学 医学 古生物学 替代医学 病理 电子工程 沉积物 生物 工程类
作者
Po‐Ting Lai,Hao‐Cheng Lin,Yung‐Tang Chuang,Chien‐Yu Chen,Wei‐Kai Cheng,Guang‐Hsun Tan,Bo‐Wei Hsu,Lin Yang,Shiu‐Cheng Lou,Li-Jen Chien,Hau-Wei Wang,Hao‐Wu Lin
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (17): 19795-19805 被引量:24
标识
DOI:10.1021/acsami.2c03114
摘要

Highly sensitive X-ray detection is crucial in, for example, medical imaging and secure inspection. Halide perovskite X-ray detectors are promising candidates for detecting highly energetic radiation. In this report, we describe vacuum-deposited Cs-based perovskite X-ray detectors possessing a p-i-n architecture. Because of the built-in potential of the p-i-n structure, these perovskite X-ray detectors were capable of efficient charge collection and displayed an exceptionally high X-ray sensitivity (1.2 C Gyair-1 cm-3) under self-powered, zero-bias conditions. We ascribe the outstanding X-ray sensitivity of the vacuum-deposited CsPbI2Br devices to their prominent charge carrier mobility. Moreover, these devices functioned with a lowest detection limit of 25.69 nGyair s-1 and possessed excellent stability after exposure to over 3000 times the total dose of a chest X-ray image. For comparison, we also prepared traditional spin-coated CH3NH3-based perovskite devices having a similar device architecture. Their volume sensitivity was only one-fifth of that of the vacuum-deposited CsPbI2Br devices. Thus, all-vacuum deposition appears to be a new strategy for developing perovskite X-ray detectors; with a high practical deposition rate, a balance can be reached between the thickness of the absorbing layer and the fabrication time.

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