材料科学
闪烁
光电子学
卤化物
纳米技术
兴奋剂
纳米晶
闪烁体
金属
光电效应
钙钛矿(结构)
质量(理念)
激子
半导体
发光
堆栈(抽象数据类型)
作者
Tao Chen,Zhaopeng Qi,Changjiang Li,Fei Huang,Zhiyuan Fan,Chunwan Jiao,Yansu Lan,Louwen Zhang,Xuhui Xu,Xiaoming Wen
标识
DOI:10.1002/sstr.202500805
摘要
The advancement of scintillators is of pivotal significance in X‐ray detection and imaging technologies, with widespread applications spanning security inspection, manufacturing quality control, medical diagnostics, and frontier scientific instruments. In recent years, metal halide perovskites and their derivatives have attracted considerable research interest as promising scintillators, attributed to their superior optoelectronic properties. Notably, zero‐dimensional (0D) copper halide Cs 3 Cu 2 I 5 crystals have emerged as a promising candidate for next‐generation scintillation materials, owing to their near‐unity quantum yield, facile synthesis process, and excellent stability against humidity and X‐ray irradiation. This review first summarizes the crystalline structure of Cs 3 Cu 2 I 5 and its two intrinsic emission mechanisms. Subsequently, it discusses the progress in X‐ray scintillation imaging performance of Cs 3 Cu 2 I 5 ‐based nanocrystals and single crystals. The review then elaborates on the underlying mechanisms of metal ion doping (including Tl + , In + , Mn 2+ , alkali metals, and alkaline earth metals) in tailoring the optoelectronic properties of Cs 3 Cu 2 I 5 crystals for scintillation applications. Finally, it highlights the emerging application prospects of Cs 3 Cu 2 I 5 crystals, such as dual‐energy X‐ray imaging, multi‐energy X‐ray linear‐array detectors, and computed tomography imaging.
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