X-ray Spectroscopy at the SuperXAS and Debye Beamlines: from in situ to Operando.

IF 1.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Chimia Pub Date : 2024-05-29 DOI:10.2533/chimia.2024.304
Aram Bugaev, Adam H Clark, Nina S Genz, Olga V Safonova, Grigory Smolentsev, Maarten Nachtegaal
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Abstract

Understanding structure-performance relationships are essential for the rational design of new functional materials or in the further optimization of (catalytic) processes. Due to the high penetration depth of the radiation used, synchrotron-based hard X-ray techniques (with energy > 4.5 keV) allow the study of materials under realistic conditions (in situ and operando) and thus play an important role in uncovering structure-performance relationships. X-ray absorption and emission spectroscopies (XAS and XES) give insight into the electronic structure (oxidation state, spin state) and local geometric structure (type and number of nearest neighbor atoms, bond distances, disorder) up to ~5 Å around the element of interest. In this mini review, we will give an overview of the in situ and operando capabilities of the SuperXAS beamline, a facility for hard X-ray spectroscopy, through recent examples from studies of heterogeneous catalysts, electrochemical systems, and photoinduced processes. The possibilities for time-resolved experiments in the time range from ns to seconds and longer are illustrated. The extension of X-ray spectroscopy at the new Debye beamline combined with operando X-ray scattering and diffraction and further developments of time-resolved XES at SuperXAS will open new possibilities after the Swiss Light Source upgrade mid 2025.

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SuperXAS 和 Debye 光束线的 X 射线光谱学:从原位到 Operando。
了解结构-性能关系对于合理设计新型功能材料或进一步优化(催化)过程至关重要。同步加速器硬 X 射线技术(能量大于 4.5 千伏安)所使用的辐射具有高穿透深度,因此可以在实际条件下(原位和操作)研究材料,从而在揭示结构-性能关系方面发挥重要作用。X 射线吸收光谱和发射光谱(XAS 和 XES)可深入了解相关元素周围 ~5 Å 范围内的电子结构(氧化态、自旋态)和局部几何结构(近邻原子的类型和数量、键距、无序性)。在这篇小型综述中,我们将通过对异质催化剂、电化学系统和光诱导过程的最新研究实例,概述硬 X 射线光谱设备 SuperXAS 光束线的原位和操作功能。说明了在从纳秒到秒甚至更长的时间范围内进行时间分辨实验的可能性。在 2025 年中期瑞士光源升级之后,新的 Debye 光束线结合操作性 X 射线散射和衍射技术对 X 射线光谱学的扩展,以及 SuperXAS 时间分辨 XES 的进一步发展,将开辟新的可能性。
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来源期刊
Chimia
Chimia 化学-化学综合
CiteScore
1.60
自引率
0.00%
发文量
144
审稿时长
2 months
期刊介绍: CHIMIA, a scientific journal for chemistry in the broadest sense covers the interests of a wide and diverse readership. Contributions from all fields of chemistry and related areas are considered for publication in the form of Review Articles and Notes. A characteristic feature of CHIMIA are the thematic issues, each devoted to an area of great current significance.
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