光电效应
各向异性
灵敏度(控制系统)
材料科学
探测器
钙钛矿(结构)
离子
结晶
光电子学
单晶
垂直的
X射线探测器
光学
化学工程
化学
结晶学
电子工程
物理
几何学
有机化学
数学
工程类
作者
Guangya Zheng,Haodi Wu,Song He,Hanchen Li,Zhiwu Dong,Tong Jin,Jincong Pang,R. Masrour,Zhiping Zheng,Guangda Niu,Ling Xu,Jiang Tang
出处
期刊:Small
[Wiley]
日期:2024-12-19
标识
DOI:10.1002/smll.202408720
摘要
Abstract 3D and 2D organic hybrid perovskites, as well as double perovskites, have demonstrated their suitability for direct X‐ray detection. However, the sensitivity and stability of 3D perovskite X‐ray detectors are currently being hindered by the existing constraints on ion movement. Therefore, there is an immediate need to develop X‐ray detectors that are both highly sensitive and stable while also being environmentally friendly. The novel low‐dimensional perovskites demonstrate exceptional inherent stability and effectively mitigate ion migration, thereby showcasing their remarkable photoelectric performance. Inspired by this, a solution crystallization method is employed to synthesize novel single crystals (SCs) of one dimensional (1D) (TMHD)SbBr 5 . The dimensions of the chained (TMHD)SbBr 5 SC are 13 × 1.3 × 1.2 mm 3 in size. The device based on a perovskite chain (TMHD)SbBr 5 exhibits unique anisotropic X‐ray detection performance with a sensitivity of 62.8 and 30.5 µC Gy air −1 cm −2 in the parallel and perpendicular orientations, respectively. It can lead to the directional movement of ions, resulting in large carrier mobility under the action of electric fields, and effectively increase the sensitivity to X‐ray detection.
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