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用于锕系元素科学的实验室型X射线光谱仪。

Laboratory-based X-ray spectrometer for actinide science.

作者信息

Novichkov Daniil, Trigub Alexander, Gerber Evgeny, Nevolin Iurii, Romanchuk Anna, Matveev Petr, Kalmykov Stepan

机构信息

Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1-3, Moscow 119991, Russian Federation.

出版信息

J Synchrotron Radiat. 2023 Nov 1;30(Pt 6):1114-1126. doi: 10.1107/S1600577523006926. Epub 2023 Sep 22.

Abstract

X-ray absorption and emission spectroscopies nowadays are advanced characterization methods for fundamental and applied actinide research. One of the advantages of these methods is to reveal slight changes in the structural and electronic properties of radionuclides. The experiments are generally carried out at synchrotrons. However, considerable progress has been made to construct laboratory-based X-ray spectrometers for X-ray absorption and emission spectroscopies. Laboratory spectrometers are reliable, effective and accessible alternatives to synchrotrons, especially for actinide research, which allow dispensing with high costs of the radioactive sample transport and synchrotron time. Moreover, data from laboratory spectrometers, obtained within a reasonable time, are comparable with synchrotron results. Thereby, laboratory spectrometers can complement synchrotrons or can be used for preliminary experiments to find perspective samples for synchrotron experiments with better resolution. Here, the construction and implementation of an X-ray spectrometer (LomonosovXAS) in Johann-geometry at a radiochemistry laboratory is reported. Examples are given of the application of LomonosovXAS to actinide systems relevant to the chemistry of f-elements, the physical chemistry of nuclear power engineering and the long-term disposal of spent nuclear fuel.

摘要

如今,X射线吸收和发射光谱学是锕系元素基础研究和应用研究的先进表征方法。这些方法的优点之一是能够揭示放射性核素结构和电子性质的细微变化。实验通常在同步加速器上进行。然而,在构建用于X射线吸收和发射光谱学的基于实验室的X射线光谱仪方面已经取得了相当大的进展。实验室光谱仪是同步加速器可靠、有效且易于使用的替代方案,特别是对于锕系元素研究而言,它无需承担放射性样品运输和同步加速器使用时间的高昂成本。此外,在合理时间内从实验室光谱仪获得的数据与同步加速器的结果具有可比性。因此,实验室光谱仪可以补充同步加速器的功能,或者可用于初步实验,以寻找具有更好分辨率的同步加速器实验的潜在样品。在此,报告了在放射化学实验室构建并运行的约翰几何构型的X射线光谱仪(罗蒙诺索夫X射线吸收光谱仪)。给出了罗蒙诺索夫X射线吸收光谱仪在与f元素化学、核电工程物理化学以及乏核燃料长期处置相关的锕系元素体系中的应用实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d67/10624025/2ffb8ab2b1ab/s-30-01114-fig1.jpg

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