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由原子团簇中极化的金属-金属键驱动的气相反应。

Gas-phase reactions driven by polarized metal-metal bonding in atomic clusters.

作者信息

Li Xiao-Na, He Sheng-Gui

机构信息

State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

Beijing National Laboratory for Molecular Sciences and CAS Research/Education Center of Excellence in Molecular Sciences, Beijing 100190, China.

出版信息

Phys Chem Chem Phys. 2023 Feb 8;25(6):4444-4459. doi: 10.1039/d2cp05148f.

Abstract

Multimetallic catalysts exhibit great potential in the activation and catalytic transformation of small molecules. The polarized metal-metal bonds have been gradually recognized to account for the reactivity of multimetallic catalysts due to the synergistic effect of different metal centers. Gas-phase reactions on atomic clusters that compositionally resemble the active sites on related condensed-phase catalysts provide a widely accepted strategy to clarify the nature of polarized metal-metal bonds and the mechanistic details of elementary steps involved in the catalysis driven by this unique chemical bonding. This perspective review concerns the progress in the fundamental understanding of industrially and environmentally important reactions that are closely related to the polarized metal-metal bonds in clusters at a strictly molecular level. The following topics have been summarized and discussed: (1) catalytic CO oxidation with O, HO, and NO as oxidants (2) and the activation of other inert molecules (, CH, CO, and N) mediated with clusters featuring polarized metal-metal bonding. It turns out that the findings in the gas phase parallel the catalytic behaviors of condensed-phase catalysts and the knowledge can prove to be essential in inspiring future design of promising catalysts.

摘要

多金属催化剂在小分子的活化和催化转化方面展现出巨大潜力。由于不同金属中心的协同效应,极化的金属 - 金属键已逐渐被认为是多金属催化剂反应活性的原因。在原子簇上进行的气相反应,其组成类似于相关凝聚相催化剂上的活性位点,这为阐明极化金属 - 金属键的本质以及由这种独特化学键驱动的催化过程中基本步骤的机理细节提供了一种广泛接受的策略。这篇视角综述关注在严格分子水平上与簇中极化金属 - 金属键密切相关的工业和环境重要反应的基本认识进展。总结并讨论了以下主题:(1)以O、HO和NO作为氧化剂的催化CO氧化;(2)以及由具有极化金属 - 金属键的簇介导的其他惰性分子(、CH、CO和N)的活化。结果表明,气相中的发现与凝聚相催化剂的催化行为相似,并且这些知识对于启发未来有前景的催化剂设计可能至关重要。

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