用于氧化反应的负载金属单原子热催化剂

L. Piccolo, S. Loridant, P. Christopher
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引用次数: 0

摘要

自20世纪50年代以来,人们对非均相催化中的单金属原子分散感兴趣,对氧化铝负载的铑“单位点”催化剂进行了光谱研究,最近对选择性氧化反应中的金属酸盐单体进行了光谱研究。十年前,随着电子显微镜技术的进步,催化界对控制负载金属的分散到单原子活性位点水平并揭示其内在催化特性的兴趣日益浓厚。在不断发展的单原子催化领域中,开创性的工作研究了在CO氧化和水气转移反应中支持过渡金属氧化物的晚期过渡金属(族8至11)。从那时起,各种单原子催化剂,通常是在氧化物上负载的,已经在广泛的热氧化反应中进行了评估,并且经常显示出卓越的性能。除了主要研究氧化负载贵金属上的CO氧化外,本章还综述了氧化反应的主要类别,包括碳氢化合物和含氧化合物的总氧化和选择性氧化
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supported Metal Single‐Atom Thermocatalysts for Oxidation Reactions
The interest in single-metal-atom dispersion in heterogeneous catalysis has existed since the 1950s with spectroscopic investigations of rhodium “single-site” catalysts supported on alumina, and more recently with oxometallate monomers for selective oxidation reactions. A decade ago, advances in electron microscopy intensified the interest of the catalysis community in controlling the dispersion of supported metals down to the single-atom active site level and revealing their intrinsic catalytic properties. Pioneering works in the ever-growing field of single-atom catalysis investigated late transition metals (group 8 to 11) supported on transition metal oxides for the CO oxidation and water-gas shift reactions. Since then, various single-atom catalysts, most often supported on oxides, have been evaluated in a broad panel of thermal oxidation reactions, and have often shown remarkable performances. Besides CO oxidation over oxidesupported noble metals, which represents the major part of the literature, this chapter reviews the main classes of oxidation reactions, including total and selective oxidations of hydrocarbons and oxygenates, on
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