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用于高分辨率X射线成像的金属卤化物闪烁体的光管理

Light Management of Metal Halide Scintillators for High-Resolution X-Ray Imaging.

作者信息

Xu Xiuwen, Xie Yue-Min, Shi Huaiyao, Wang Yongquan, Zhu Xianjun, Li Bing-Xiang, Liu Shujuan, Chen Bing, Zhao Qiang

机构信息

College of Electronic and Optical Engineering and College of Flexible Electronics (Future Technology), Nanjing University of Posts and Telecommunications, Nanjing, 210023, P. R. China.

Institute of Functional Nano & Soft Materials (FUNSOM), Joint International Research Laboratory of Carbon-Based Functional Materials and Devices, Soochow University, Suzhou, 215123, P. R. China.

出版信息

Adv Mater. 2024 Jan;36(3):e2303738. doi: 10.1002/adma.202303738. Epub 2023 Nov 27.

DOI:10.1002/adma.202303738
PMID:38009773
Abstract

The ever-growing need to inspect matter with hyperfine structures requires a revolution in current scintillation detectors, and the innovation of scintillators is revived with luminescent metal halides entering the scene. Notably, for any scintillator, two fundamental issues arise: Which kind of material is suitable and in what form should the material exist? The answer to the former question involves the sequence of certain atoms into specific crystal structures that facilitate the conversion of X-ray into light, whereas the answer to the latter involves assembling these crystallites into particular material forms that can guide light propagation toward its corresponding pixel detector. Despite their equal importance, efforts are overwhelmingly devoted to improving the X-ray-to-light conversion, while the material-form-associated light propagation, which determines the optical signal collected for X-ray imaging, is largely overlooked. This perspective critically correlates the reported spatial resolution with the light-propagation behavior in each form of metal halides, combing the designing rules for their future development.

摘要

对具有超精细结构的物质进行检测的需求不断增长,这就要求对当前的闪烁探测器进行革新,随着发光金属卤化物的出现,闪烁体的创新得以复兴。值得注意的是,对于任何闪烁体而言,都会出现两个基本问题:哪种材料合适以及材料应以何种形式存在?前一个问题的答案涉及将某些原子排列成特定的晶体结构,以促进X射线向光的转换,而后一个问题的答案则涉及将这些微晶组装成特定的材料形式,从而能够将光传播导向其相应的像素探测器。尽管它们同样重要,但人们绝大多数的努力都致力于改善X射线到光的转换,而与材料形式相关的光传播,即决定用于X射线成像所收集的光信号的因素,却在很大程度上被忽视了。这一观点将所报道的空间分辨率与每种形式的金属卤化物中的光传播行为紧密关联起来,梳理了它们未来发展的设计规则。

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