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用于高灵敏度X射线闪烁和成像的聚合物复合材料包裹铈掺杂的LiYF微晶

Polymer Composites Entrapped Ce-Doped LiYF Microcrystals for High-Sensitivity X-ray Scintillation and Imaging.

作者信息

Qiu Zhihua, Wang Shuaihua, Wang Wenqian, Wu Shaofan

机构信息

Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, People's Republic of China.

University of the Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 1;12(26):29835-29843. doi: 10.1021/acsami.0c07765. Epub 2020 Jun 17.

Abstract

Scintillators are widely used for radiation detection. The ability of converting ionizing radiation into visible photons is critical for application in X-ray security, computed tomography, and nuclear cameras. Conventional scintillators involve a high-temperature preparation and pose challenges for device integration and processability. Here, we report a facile hydrothermal synthesis of Ce-doped LiYF microcrystals (MCs) and their polymer composites for high-sensitivity X-ray detection and imaging application. These MC scintillators exhibit strong X-ray radioluminescence (RL) at ultraviolet wavelengths and show a high sensitivity to X-rays. Scintillating bulks based on these MCs display both strong RL and tunable emission across the visible spectrum. Further, these MC scintillators can be readily spun into a uniform film with a suitable MC content for X-ray imaging. Scintillating films can generate a strong X-ray-induced emission and long-term stability under X-ray illumination. Dose dependence of the RL intensity of our scintillating film indicates a high sensitivity to X-rays. Importantly, we exhibit an archetype application of scintillating films as X-ray radiography for a printed circuit board (PCB). Such an archetype can provide a decent spatial resolution as high as 0.54 mm. Our finding manifests MC composites of steady and efficient RL as a promising approach for X-ray radiography application.

摘要

闪烁体被广泛用于辐射探测。将电离辐射转化为可见光子的能力对于X射线安检、计算机断层扫描和核相机应用至关重要。传统闪烁体需要高温制备,这给器件集成和可加工性带来了挑战。在此,我们报道了一种简便的水热合成法,用于制备掺铈的LiYF微晶(MCs)及其聚合物复合材料,以用于高灵敏度X射线探测和成像应用。这些MC闪烁体在紫外波长下表现出强烈的X射线辐射发光(RL),并且对X射线具有高灵敏度。基于这些MCs的闪烁体块在整个可见光谱范围内都表现出强烈的RL和可调发射。此外,这些MC闪烁体可以很容易地纺成具有合适MC含量的均匀薄膜,用于X射线成像。闪烁薄膜在X射线照射下可以产生强烈的X射线诱导发射和长期稳定性。我们的闪烁薄膜的RL强度的剂量依赖性表明其对X射线具有高灵敏度。重要的是,我们展示了闪烁薄膜作为印刷电路板(PCB)的X射线射线照相的原型应用。这样的原型可以提供高达0.54毫米的良好空间分辨率。我们的发现表明,具有稳定高效RL的MC复合材料是一种有前途的X射线射线照相应用方法。

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