Title: 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

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

DOI: https://doi.org/10.1021/acs.jpcc.4c03959

Date: 28/08/2024

Working Group: WG3

Grant Period: 2

Grant Period Goal (number): GAPG-5

Covered deliverables from the MoU (number): 3.4.2

Countries involved: Germany, South Africa

Number of female/young/ITC coauthors: 3/4/0

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 AuxOy 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 AuxOy 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.

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