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零维卤化亚铜微晶作为用于柔性X射线成像的高效闪烁体

Zero-Dimensional Copper(I) Halide Microcrystals as Highly Efficient Scintillators for Flexible X-ray Imaging.

作者信息

Lin Na, Wang Xin, Zhang Hong-Yan, Sun Kai-Qi, Xiao Li, Zhang Xin-Yue, Yue Cheng-Yang, Han Li, Chen Zhi-Wei, Lei Xiao-Wu

机构信息

Research Institute of Optoelectronic Functional Materials, School of Chemistry, Chemical Engineering and Materials, Jining University, Qufu, Shandong 273155, P. R. China.

School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong 273165, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 7;16(31):41165-41175. doi: 10.1021/acsami.4c07376. Epub 2024 Jul 25.

Abstract

Commercially available rare-earth-doped inorganic oxide materials have been widely applied as X-ray scintillators, but the fragile characteristics, high detection limit, and harsh preparation condition seriously restrict their wide applications. Furthermore, it remains a huge challenge to realize X-ray flexible imaging technology for real-time monitoring of the curving interface of complex devices. To address these issues, we herein report two isostructural cuprous halides of zero-dimensional (0D) [AEPipz]CuX·X·HO (AEPipz = -aminoethylpiperazine, X = Br and I) with controllable size to nanosize crystal as highly efficient scintillators toward flexible X-ray imaging. These cuprous halides exhibit highly efficient cyan photoluminescence and radioluminescence emissions with the highest quantum yield of 92.1% and light yield of 62,400 photons MeV, respectively, surpassing most of the commercially available inorganic scintillators. Meanwhile, the ultralow detection limit of 95.7 Gy s was far below the X-ray dose required for diagnosis (5.5 Gy s). More significantly, the flexible film is facilely assembled with excellent foldability and high crack resistance, which further acts as a scintillation screen achieving a high spatial resolution of 17.4 lp mm in X-ray imaging, demonstrating the potential application in wearable radiation radiography. The combined advantages of high light yield, low detection limit, and excellent flexibility promote these 0D cuprous halides as the most promising X-ray scintillators.

摘要

市售的稀土掺杂无机氧化物材料已被广泛用作X射线闪烁体,但其易碎的特性、高检测限和苛刻的制备条件严重限制了它们的广泛应用。此外,实现用于实时监测复杂设备弯曲界面的X射线柔性成像技术仍然是一个巨大的挑战。为了解决这些问题,我们在此报告了两种零维(0D)等结构的卤化亚铜[AEPipz]CuX·X·H₂O(AEPipz = β-氨基乙基哌嗪,X = Br和I),其尺寸可控至纳米级晶体,作为用于柔性X射线成像的高效闪烁体。这些卤化亚铜表现出高效的青色光致发光和辐射发光发射,量子产率最高可达92.1%,光产额分别为62400光子/MeV,超过了大多数市售无机闪烁体。同时,95.7 nGy/s的超低检测限远低于诊断所需的X射线剂量(5.5 μGy/s)。更重要的是,该柔性薄膜易于组装,具有出色的可折叠性和高抗裂性,进一步作为闪烁屏在X射线成像中实现了17.4 lp/mm的高空间分辨率,展示了其在可穿戴辐射成像中的潜在应用。高光产额、低检测限和出色柔韧性的综合优势使这些0D卤化亚铜成为最有前途的X射线闪烁体。

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