用于新一代检测设备和能源生产的具有成分无序石榴石结构的多用途发光材料

IF 0.6 4区 材料科学 Q4 CRYSTALLOGRAPHY
V. M. Retivov, M. V. Korzhik, M. V. Kovalchuk
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引用次数: 0

摘要

无序晶体系统在类似于自然条件下形成时表现出广泛的光学性质,已成为最近旨在创造新一代光子学材料的密集研究对象。立方石榴石结构类型的化合物是该领域的一个很有前途的发展方向,这种化合物基本上是由自然界中的二价和四价阳离子形成的。本文考虑了以石榴石结构创造多功能晶体材料的原理,以及通过晶体阳离子子系统的成分紊乱来定向控制其性质的可能性。对国家研究中心“库尔恰托夫研究所”(NRC KI)获得的材料和用于PET扫描仪的商业闪烁材料进行了比较分析。展示了利用同位素源进行能源生产的可能应用的新领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multipurpose Luminescence Materials with Compositionally Disordered Garnet Structure for the New Generation of Detecting Equipment and Energy Production

Multipurpose Luminescence Materials with Compositionally Disordered Garnet Structure for the New Generation of Detecting Equipment and Energy Production

Disordered crystalline systems, which exhibit a wide range of optical properties when formed under conditions similar to natural, have become an object of intensive recent research aimed at creating new-generation materials for photonics. A promising direction in this field is the development of compounds of cubic garnet structure type, which is formed basically from two- and four-charged cations in nature. The principles of creating multifunctional crystalline materials with a garnet structure and possibilities of targeted control of their properties through compositional disorder in the cationic subsystem of the crystal are considered. A comparative analysis of the material obtained at the National Research Centre “Kurchatov Institute” (NRC KI) and commercial scintillation materials for PET scanners is performed. New areas of possible application for energy production using isotope sources are demonstrated.

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来源期刊
Crystallography Reports
Crystallography Reports 化学-晶体学
CiteScore
1.10
自引率
28.60%
发文量
96
审稿时长
4-8 weeks
期刊介绍: Crystallography Reports is a journal that publishes original articles short communications, and reviews on various aspects of crystallography: diffraction and scattering of X-rays, electrons, and neutrons, determination of crystal structure of inorganic and organic substances, including proteins and other biological substances; UV-VIS and IR spectroscopy; growth, imperfect structure and physical properties of crystals; thin films, liquid crystals, nanomaterials, partially disordered systems, and the methods of studies.
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