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强金属-载体相互作用的复兴

Renaissance of Strong Metal-Support Interactions.

作者信息

Xu Ming, Peng Mi, Tang Hailian, Zhou Wu, Qiao Botao, Ma Ding

机构信息

Beijing National Laboratory for Molecular Sciences, New Cornerstone Science Laboratory, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, P. R. China.

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

出版信息

J Am Chem Soc. 2024 Jan 31;146(4):2290-2307. doi: 10.1021/jacs.3c09102. Epub 2024 Jan 18.

Abstract

Strong metal-support interactions (SMSIs) have emerged as a significant and cutting-edge area of research in heterogeneous catalysis. They play crucial roles in modifying the chemisorption properties, interfacial structure, and electronic characteristics of supported metals, thereby exerting a profound influence on the catalytic properties. This Perspective aims to provide a comprehensive summary of the latest advancements and insights into SMSIs, with a focus on state-of-the-art / characterization techniques. This overview also identifies innovative designs and applications of new types of SMSI systems in catalytic chemistry and highlights their pivotal role in enhancing catalytic performance, selectivity, and stability in specific cases. Particularly notable is the discovery of SMSI between active metals and metal carbides, which opens up a new era in the field of SMSI. Additionally, the strong interactions between atomically dispersed metals and supports are discussed, with an emphasis on the electronic effects of the support. The chemical nature of SMSI and its underlying catalytic mechanisms are also elaborated upon. It is evident that SMSI modification has become a powerful tool for enhancing catalytic performance in various catalytic applications.

摘要

强金属-载体相互作用(SMSIs)已成为多相催化领域一个重要且前沿的研究方向。它们在改变负载型金属的化学吸附性质、界面结构和电子特性方面发挥着关键作用,从而对催化性能产生深远影响。本综述旨在全面总结SMSIs的最新进展和见解,重点关注先进的表征技术。本概述还确定了新型SMSI体系在催化化学中的创新设计和应用,并强调了它们在特定情况下提高催化性能、选择性和稳定性方面的关键作用。特别值得注意的是活性金属与金属碳化物之间SMSI的发现,这开启了SMSI领域的新纪元。此外,还讨论了原子分散金属与载体之间的强相互作用,重点是载体的电子效应。同时也阐述了SMSI的化学本质及其潜在的催化机制。显然,SMSI修饰已成为提高各种催化应用中催化性能的有力工具。

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