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原子 AXAFS 和 Delta(mu) XANES 技术在多相催化和电催化中的应用。

The atomic AXAFS and Delta(mu) XANES techniques as applied to heterogeneous catalysis and electrocatalysis.

机构信息

Department of Chemistry, George Washington University, Washington, DC 20052, USA.

出版信息

Phys Chem Chem Phys. 2010 Jun 7;12(21):5514-34. doi: 10.1039/b927120c. Epub 2010 May 4.

Abstract

X-Ray absorption spectroscopy (XAFS) is an attractive in situ and in operando technique. In recent years, the more conventional extended X-ray absorption fine structure (EXAFS) data analysis technique has been complemented by two newer analysis methods: the 'atomic' XAFS (AXAFS) technique, which analyzes the scattering from the absorber atom itself, and the Delta(mu) XANES technique, which uses a difference method to isolate the changes in the X-ray absorption near edge structure (XANES) due to adsorbates on a metal surface. With AXAFS it is possible to follow the electronic effect a support has on a metal particle; with Delta(mu) XANES it is possible to determine the adsorbate, the specific adsorption sites and adsorbate coverage on a metal catalyst. This unprecedented new information helps a great deal to unravel the complex kinetic mechanisms operating in working reactors or fuel cell systems. The fundamental principles and methodology for applying the AXAFS and Delta(mu) XANES techniques are given here, and then specific applications are summarized, including H adsorption on supported Pt in the gas phase, water activation at a Pt cathode and methanol oxidation at a Pt anode in an electrochemical cell, sulfur oxidation on Pt, and oxygen reduction on a Au/SnO(x) cathode. Finally, the future outlook for time and/or space resolved applications of these techniques is contemplated.

摘要

X 射线吸收光谱学(XAFS)是一种很有吸引力的原位和操作条件技术。近年来,更传统的扩展 X 射线吸收精细结构(EXAFS)数据分析技术得到了两种新的分析方法的补充:分析吸收体原子本身散射的“原子”XAFS(AXAFS)技术,以及使用差分方法来分离金属表面吸附物引起的 X 射线吸收近边结构(XANES)变化的 Delta(mu) XANES 技术。利用 AXAFS 可以跟踪载体对金属颗粒的电子效应;利用 Delta(mu) XANES 可以确定金属催化剂上的吸附物、特定的吸附位置和吸附物覆盖率。这种前所未有的新信息极大地帮助我们揭示了在工作反应器或燃料电池系统中运行的复杂动力学机制。这里给出了应用 AXAFS 和 Delta(mu) XANES 技术的基本原则和方法,然后总结了具体的应用,包括气相中负载 Pt 上的 H 吸附、Pt 阴极上水的活化以及电化学池中 Pt 阳极上的甲醇氧化、Pt 上的硫氧化和 Au/SnO(x)阴极上的氧还原。最后,考虑了这些技术的时间和/或空间分辨应用的未来展望。

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