Korzhik Mikhail, Fedorov Andrei, Dosovitskiy Georgy, Anniyev Toyli, Vasilyev Maxim, Khabashesku Valery
National Research Center Kurchatov Institute, 123098 Moscow, Russia.
Radiation Instruments and New Components LLC, 220600 Minsk, Belarus.
Materials (Basel). 2021 Aug 27;14(17):4889. doi: 10.3390/ma14174889.
This review article considers the latest developments in the field of inorganic scintillation materials. Modern trends in the improvement of inorganic scintillation materials are based on engineering their features at the nanoscale level. The essential challenges to the fundamental steps of the technology of inorganic glass, glass ceramics, and ceramic scintillation materials are discussed. The advantage of co-precipitation over the solid-state synthesis of the raw material compositions, particularly those which include high vapor components is described. Methods to improve the scintillation parameters of the glass to the level of single crystals are considered. The move to crystalline systems with the compositional disorder to improve their scintillation properties is justified both theoretically and practically. A benefit of the implementation of the discussed matters into the technology of well-known glass and crystalline scintillation materials is demonstrated.
这篇综述文章探讨了无机闪烁材料领域的最新进展。无机闪烁材料改进的现代趋势基于在纳米尺度上设计其特性。讨论了无机玻璃、玻璃陶瓷和陶瓷闪烁材料技术基本步骤所面临的主要挑战。描述了共沉淀法相对于原料组合物固态合成法的优势,特别是对于那些包含高挥发性成分的组合物。考虑了将玻璃的闪烁参数提高到单晶水平的方法。转向具有成分无序的晶体系统以改善其闪烁特性在理论和实践上都是合理的。证明了将所讨论的内容应用于知名玻璃和晶体闪烁材料技术中的益处。