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用于多相催化的金属催化剂:从单原子到纳米团簇和纳米颗粒

Metal Catalysts for Heterogeneous Catalysis: From Single Atoms to Nanoclusters and Nanoparticles.

作者信息

Liu Lichen, Corma Avelino

机构信息

Instituto de Tecnología Química , Universitat Politécnica de València-Consejo Superior de Investigaciones Científicas (UPV-CSIC) , Avenida de los Naranjos s/n , 46022 Valencia , España.

出版信息

Chem Rev. 2018 May 23;118(10):4981-5079. doi: 10.1021/acs.chemrev.7b00776. Epub 2018 Apr 16.

Abstract

Metal species with different size (single atoms, nanoclusters, and nanoparticles) show different catalytic behavior for various heterogeneous catalytic reactions. It has been shown in the literature that many factors including the particle size, shape, chemical composition, metal-support interaction, and metal-reactant/solvent interaction can have significant influences on the catalytic properties of metal catalysts. The recent developments of well-controlled synthesis methodologies and advanced characterization tools allow one to correlate the relationships at the molecular level. In this Review, the electronic and geometric structures of single atoms, nanoclusters, and nanoparticles will be discussed. Furthermore, we will summarize the catalytic applications of single atoms, nanoclusters, and nanoparticles for different types of reactions, including CO oxidation, selective oxidation, selective hydrogenation, organic reactions, electrocatalytic, and photocatalytic reactions. We will compare the results obtained from different systems and try to give a picture on how different types of metal species work in different reactions and give perspectives on the future directions toward better understanding of the catalytic behavior of different metal entities (single atoms, nanoclusters, and nanoparticles) in a unifying manner.

摘要

具有不同尺寸的金属物种(单原子、纳米团簇和纳米颗粒)在各种多相催化反应中表现出不同的催化行为。文献表明,包括粒径、形状、化学成分、金属-载体相互作用以及金属-反应物/溶剂相互作用在内的许多因素都会对金属催化剂的催化性能产生重大影响。近年来,精准可控的合成方法和先进表征工具的发展使人们能够在分子水平上关联各种关系。在本综述中,将讨论单原子、纳米团簇和纳米颗粒的电子结构和几何结构。此外,我们将总结单原子、纳米团簇和纳米颗粒在不同类型反应中的催化应用,包括CO氧化、选择性氧化、选择性氢化、有机反应、电催化和光催化反应。我们将比较不同体系获得的结果,并试图描绘出不同类型的金属物种在不同反应中的作用方式,并对未来以统一方式更好地理解不同金属实体(单原子、纳米团簇和纳米颗粒)催化行为的方向给出展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c28/6061779/fba4a8670593/cr-2017-00776v_0072.jpg

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