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稳定基质中的发光体:基于商业概念设计用于X射线成像的卤化物钙钛矿闪烁体

Shining Emitter in a Stable Host: Design of Halide Perovskite Scintillators for X-ray Imaging from Commercial Concept.

作者信息

Cao Fei, Yu Dejian, Ma Wenbo, Xu Xiaobao, Cai Bo, Yang Yang Michael, Liu Sinan, He Lunhua, Ke Yubin, Lan Si, Choy Kwang-Leong, Zeng Haibo

机构信息

Institute of Optoelectronics & Nanomaterials, MIIT Key Laboratory of Advanced Display Materials and Devices, College of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou, Zhejiang 310007, China.

出版信息

ACS Nano. 2020 May 26;14(5):5183-5193. doi: 10.1021/acsnano.9b06114. Epub 2019 Dec 9.

Abstract

Halide perovskite (HP) nanocrystals (NCs) have recently shown great potential for X-ray detection and imaging. However, the practical application still has a long way to go with many technical requirements waiting to be fulfilled, including structure optimization, stability enhancement, and cost reduction. A design principle in this beginning stage is urgently needed but still lacking. Herein, with an "emitter-in-matrix" principle refined from commercial scintillators, CsPbBr@CsPbBr with emissive CsPbBr NCs embedded inside a solid-state CsPbBr host is subjected to X-ray sensing and imaging. The CsPbBr matrix not only enhances the attenuation of X-rays but also dramatically improves the stability of CsPbBr NCs. A favorable optical design with the CsPbBr matrix being transparent to the emission from CsPbBr NCs enables efficient light output. As a result, stable and sensitive scintillation response to X-ray signals is demonstrated with superior linearity and ultrahigh time resolution. In order to show the huge potential for practical applications, X-ray imaging using a large-area film (360 mm × 240 mm) by the blade-coating technique is carried out to obtain a high-quality image of interior structures invisible to the human eye. In addition to the above advantages in optics, CsPbBr@CsPbBr also enjoys facile solution synthesis with large scalability, excellent repeatability, and low cost.

摘要

卤化物钙钛矿(HP)纳米晶体(NCs)最近在X射线检测和成像方面显示出巨大潜力。然而,实际应用仍有很长的路要走,许多技术要求有待满足,包括结构优化、稳定性增强和成本降低。在这个初始阶段,迫切需要一种设计原则,但目前仍然缺乏。在此,基于从商业闪烁体中提炼出的“基质中的发射体”原则,将发射性CsPbBr纳米晶嵌入固态CsPbBr基质中的CsPbBr@CsPbBr用于X射线传感和成像。CsPbBr基质不仅增强了X射线的衰减,还显著提高了CsPbBr纳米晶的稳定性。CsPbBr基质对CsPbBr纳米晶发射光透明的良好光学设计实现了高效的光输出。结果表明,对X射线信号具有稳定且灵敏的闪烁响应,具有出色的线性度和超高的时间分辨率。为了展示其在实际应用中的巨大潜力,采用刮涂技术使用大面积薄膜(360毫米×240毫米)进行X射线成像,以获得人眼不可见的内部结构的高质量图像。除了上述光学优势外,CsPbBr@CsPbBr还具有溶液合成简便、可扩展性强、重复性好和成本低的特点。

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