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高能表面X射线衍射应用于工作中的模型催化剂表面。

High energy surface x-ray diffraction applied to model catalyst surfaces at work.

作者信息

Hejral Uta, Shipilin Mikhail, Gustafson Johan, Stierle Andreas, Lundgren Edvin

机构信息

Division of Synchrotron Radiation Research, Lund University, 221 00 Lund, Sweden.

Deutsches Elektronen-Synchrotron DESY, 22603 Hamburg, Germany.

出版信息

J Phys Condens Matter. 2021 Feb 17;33(7):073001. doi: 10.1088/1361-648X/abb17c.

DOI:10.1088/1361-648X/abb17c
PMID:33690191
Abstract

Catalysts are materials that accelerate the rate of a desired chemical reaction. As such, they constitute an integral part in many applications ranging from the production of fine chemicals in chemical industry to exhaust gas treatment in vehicles. Accordingly, it is of utmost economic interest to improve catalyst efficiency and performance, which requires an understanding of the interplay between the catalyst structure, the gas phase and the catalytic activity under realistic reaction conditions at ambient pressures and elevated temperatures. In recent years efforts have been made to increasingly develop techniques that allow for investigating model catalyst samples under conditions closer to those of real technical catalysts. One of these techniques is high energy surface x-ray diffraction (HESXRD), which uses x-rays with photon energies typically in the range of 70-80 keV. HESXRD allows a fast data collection of three dimensional reciprocal space for the structure determination of model catalyst samples under operando conditions and has since been used for the investigation of an increasing number of different model catalysts. In this article we will review general considerations of HESXRD including its working principle for different model catalyst samples and the experimental equipment required. An overview over HESXRD investigations performed in recent years will be given, and the advantages of HESXRD with respect to its application to different model catalyst samples will be presented. Moreover, the combination of HESXRD with other operando techniques such as in situ mass spectrometry, planar laser-induced fluorescence and surface optical reflectance will be discussed. The article will close with an outlook on future perspectives and applications of HESXRD.

摘要

催化剂是能够加速所需化学反应速率的材料。因此,它们在许多应用中都起着不可或缺的作用,从化学工业中精细化学品的生产到车辆尾气处理等。相应地,提高催化剂效率和性能具有极大的经济意义,这需要了解在环境压力和高温下实际反应条件下催化剂结构、气相和催化活性之间的相互作用。近年来,人们越来越努力开发能够在更接近实际工业催化剂条件下研究模型催化剂样品的技术。其中一种技术是高能表面X射线衍射(HESXRD),它使用光子能量通常在70 - 80 keV范围内的X射线。HESXRD能够在操作条件下快速收集三维倒易空间的数据,用于确定模型催化剂样品的结构,并且自那以后已被用于研究越来越多不同的模型催化剂。在本文中,我们将回顾HESXRD的一般考虑因素,包括其对不同模型催化剂样品的工作原理以及所需的实验设备。将给出近年来进行的HESXRD研究的概述,并介绍HESXRD在应用于不同模型催化剂样品方面的优势。此外,还将讨论HESXRD与其他操作技术(如原位质谱、平面激光诱导荧光和表面光学反射率)的结合。本文将以对HESXRD未来前景和应用的展望作为结尾。

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High energy surface x-ray diffraction applied to model catalyst surfaces at work.高能表面X射线衍射应用于工作中的模型催化剂表面。
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引用本文的文献

1
: a high-energy surface X-ray diffraction analysis toolkit.:一种高能表面X射线衍射分析工具包。
J Appl Crystallogr. 2023 Feb 1;56(Pt 1):312-321. doi: 10.1107/S1600576723000092.
2
Reflectance Microscopy on Polycrystalline Surfaces in Thermal Catalysis, Electrocatalysis, and Corrosion.热催化、电催化和腐蚀中多晶表面的反射显微镜技术
ACS Appl Mater Interfaces. 2021 Apr 28;13(16):19530-19540. doi: 10.1021/acsami.1c04961. Epub 2021 Apr 19.