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金催化剂的特性研究。

Characterisation of gold catalysts.

机构信息

Dipartimento di Chimica, Università degli studi di Milano, via Golgi 19, 20133, Milano, Italy.

出版信息

Chem Soc Rev. 2016 Sep 21;45(18):4953-94. doi: 10.1039/c5cs00350d. Epub 2016 May 20.

Abstract

Au-based catalysts have established a new important field of catalysis, revealing specific properties in terms of both high activity and selectivity for many reactions. However, the correlation between the morphology and the activity of the catalyst is not always clear although much effort has been addressed to this task. To some extent the problem relates to the complexity of the characterisation techniques that can be applied to Au catalyst and the broad range of ways in which they can be prepared. Indeed, in many reports only a few characterization techniques have been used to investigate the potential nature of the active sites. The aim of this review is to provide a critical description of the techniques that are most commonly used as well as the more advanced characterization techniques available for this task. The techniques that we discuss are (i) transmission electron microscopy methods, (ii) X-ray spectroscopy techniques, (iii) vibrational spectroscopy techniques and (iv) chemisorption methods. The description is coupled with developing an understanding of a number of preparation methods. In the final section the example of the supported AuPd alloy catalyst is discussed to show how the techniques can gain an understanding of an active oxidation catalyst.

摘要

基于金的催化剂在催化领域开辟了一个新的重要领域,在许多反应中表现出高活性和选择性的特定性质。然而,尽管已经为此付出了很多努力,但催化剂的形态与其活性之间的相关性并不总是很清楚。在某种程度上,这个问题涉及到可以应用于 Au 催化剂的特征化技术的复杂性,以及它们可以被制备的广泛方式。事实上,在许多报告中,仅使用了几种特征化技术来研究活性位点的潜在性质。本综述的目的是提供对最常用技术以及更先进的特征化技术的批判性描述,这些技术可用于此任务。我们讨论的技术是:(i)透射电子显微镜方法,(ii)X 射线光谱技术,(iii)振动光谱技术和(iv)化学吸附方法。描述与对许多制备方法的理解相结合。在最后一节中,讨论了负载 AuPd 合金催化剂的实例,以说明这些技术如何能够深入了解活性氧化催化剂。

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