Issue 1, 2021

Sum frequency generation spectroscopy in heterogeneous model catalysis: a minireview of CO-related processes

Abstract

Sum frequency generation (SFG) vibrational spectroscopy is a unique surface/interface-sensitive method, enabling the identification of chemical species and molecular structures, densities and orientations. SFG has been proven to be a powerful probe to examine adsorbates and reactions at solid–gas interfaces related to heterogeneous catalysis, employing well-defined ultra-high vacuum (UHV) grown model catalysts and UHV-compatible high-pressure reaction cells, enabling bridging both the materials and pressure gaps. SFG was thus among the first methods for ambient pressure surface science, enabling the characterization of “high pressure adsorbates”. In this mini-review, we provide an overview of SFG studies of CO-related processes in heterogeneous model catalysis. This includes pressure- and/or temperature-dependent CO adsorption on single crystals (platinum, palladium, rhodium, iridium, copper, nickel) and oxide/graphene-supported (palladium, platinum) nanoparticles, as well as CO reactions (oxidation/hydrogenation) simultaneously monitored by SFG and mass spectrometry. The adsorption of isotopic CO mixtures on single crystals and nanoparticles provides information on the individual contributions of vibrational coupling and chemical interactions to the adsorbate–adsorbate interactions. Altogether, SFG helps to identify various adsorption sites, adsorbate structures, molecular orientations and CO reactions on prototypical catalyst surfaces of increasing complexity. Specifically, the analysis of molecular orientation (tilt angles) can be carried out by polarization-dependent SFG.

Graphical abstract: Sum frequency generation spectroscopy in heterogeneous model catalysis: a minireview of CO-related processes

Article information

Article type
Minireview
Submitted
04 Sep 2020
Accepted
03 Nov 2020
First published
08 Dec 2020
This article is Open Access
Creative Commons BY license

Catal. Sci. Technol., 2021,11, 12-26

Sum frequency generation spectroscopy in heterogeneous model catalysis: a minireview of CO-related processes

X. Li and G. Rupprechter, Catal. Sci. Technol., 2021, 11, 12 DOI: 10.1039/D0CY01736A

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