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金催化甲醇选择性氧化制甲酸甲酯:等温脉冲分子束实验和AIMD模拟揭示低配位位点的作用

Selective Oxidation of Methanol to Methyl Formate on Gold: The Role of Low-Coordinated Sites Revealed by Isothermal Pulsed Molecular Beam Experiments and AIMD Simulations.

作者信息

Eltayeb Salma, Carroll Lenard L, Dippel Lukas, Mostaghimi Mersad, Riedel Wiebke, Moskaleva Lyudmila V, Risse Thomas

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Arnimallee 22, 14195 Berlin, Germany.

Department of Chemistry, Faculty of Natural and Agricultural Sciences, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa.

出版信息

J Phys Chem C Nanomater Interfaces. 2024 Aug 28;128(36):14978-14988. doi: 10.1021/acs.jpcc.4c03959. eCollection 2024 Sep 12.

Abstract

To elucidate the role of low-coordinated sites in the partial methanol oxidation to methyl formate (MeFo), the isothermal reactivity of flat Au(111) and stepped Au(332) in pulsed molecular beam experiments was compared for a broad range of reaction conditions. Low-coordinated step sites were found to enhance MeFo selectivity, especially at low coverage conditions, as found at higher temperatures. The analysis of the transient kinetics provides evidence for the essential role of Au O phases for MeFo formation and the complex interplay of different oxygen species for the observed selectivity. Ab initio molecular dynamic simulations yielded microscopic insights in the formation of Au O phases on flat and stepped gold surfaces emphasizing the role of low-coordinated sites in their formation. Moreover, associated surface restructuring provides atomic-scale insights which align with the experimentally observed transient kinetics in MeFo formation.

摘要

为阐明低配位位点在甲醇部分氧化制甲酸甲酯(MeFo)中的作用,在脉冲分子束实验中,针对广泛的反应条件,比较了平整Au(111)和阶梯状Au(332)的等温反应活性。发现低配位的阶梯位点可提高MeFo选择性,尤其是在高温下出现的低覆盖度条件下。对瞬态动力学的分析为Au-O相对MeFo形成的关键作用以及不同氧物种间复杂的相互作用导致所观察到的选择性提供了证据。从头算分子动力学模拟对平整和阶梯状金表面上Au-O相的形成给出了微观见解,强调了低配位位点在其形成中的作用。此外,相关的表面重构提供了与MeFo形成中实验观察到的瞬态动力学相符的原子尺度见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ed0/11403654/8103707caf76/jp4c03959_0001.jpg

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