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胶体纳米晶体的闪烁

Scintillation of colloidal nanocrystals.

作者信息

Diroll B T, Guzelturk B

机构信息

Center for Nanoscale Materials, Argonne National Laboratory, 9700 S. Cass Avenue, Lemont, Illinois 60439, USA.

X-ray Sciences Division, Argonne National Laboratory, 9700 S. Cass Avenue, Lemont, Illinois 60439, USA.

出版信息

J Chem Phys. 2024 Sep 28;161(12). doi: 10.1063/5.0225907.

Abstract

Scintillators are materials that convert ionizing radiation in the form of particles or photons into low-energy photons in the ultraviolet to near-infrared spectral range. This work reviews efforts to use colloidal nanocrystals as scintillator materials. To date, research on colloidal nanocrystals as scintillators has focused on doped phosphor systems, quantum dots and related structures, and perovskite-based nanocrystals. Among various material classes and forms, colloidal semiconductor nanocrystals stand out thanks to their appealing fluorescence properties, yet understanding of their radioluminescence and cathodoluminescence is incomplete. This review discusses fundamental limits and material design challenges toward achieving high brightness, fast speed, and durable scintillator performance with nanocrystal scintillators. First, this review describes the basic principles and efficiency limitations of scintillation, particularly the large influence of multiple exciton generation in many nanocrystal species, as well as performance metrics. Second, methods for measurement are described. Third, we review the results of the main classes of nanocrystal scintillators, including quantum dots and related particles, perovskites, and doped-phosphor particles. Fourth, scintillation imaging is discussed in terms of the relevant performance metrics and results obtained using nanocrystal materials. Finally, we note the strengths and weaknesses of nanocrystal scintillators and discuss potential areas of further development.

摘要

闪烁体是将粒子或光子形式的电离辐射转换为紫外到近红外光谱范围内低能光子的材料。本文综述了将胶体纳米晶体用作闪烁体材料的相关研究工作。迄今为止,关于胶体纳米晶体作为闪烁体的研究主要集中在掺杂磷光体体系、量子点及相关结构以及钙钛矿基纳米晶体上。在各类材料及其形式中,胶体半导体纳米晶体因其引人注目的荧光特性而格外突出,然而对其辐射发光和阴极发光的理解仍不完整。本综述讨论了在利用纳米晶体闪烁体实现高亮度、快速响应和持久闪烁体性能方面的基本限制和材料设计挑战。首先,本文描述了闪烁的基本原理和效率限制,特别是多激子产生对许多纳米晶体种类的重大影响,以及性能指标。其次,介绍了测量方法。第三,我们综述了主要类别的纳米晶体闪烁体的研究结果,包括量子点及相关粒子、钙钛矿和掺杂磷光体粒子。第四,从相关性能指标和使用纳米晶体材料获得的结果方面讨论了闪烁成像。最后,我们指出了纳米晶体闪烁体的优缺点,并讨论了进一步发展的潜在领域。

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