Investigation of the Kinetics of a Surface Photocatalytic Reaction in Two Dimensions with Surface-enhanced Raman Scattering
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2014-12
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Abstract
Heterogeneous catalysis is a surface phenomenon. Yet, though the catalysis itself takes place on surfaces, the reactants and products rapidly take the form of another physical state, as either a liquid or a gas. Catalytic reactions within a self-assembled monolayer are confined within two dimensions, as the molecules involved do not leave the surface. Surface-enhanced Raman spectroscopy is an ideal technique to probe these self-assembled monolayers as it gives molecular information in a measured volume limited to the surface. We show how surface-enhanced Raman spectroscopy can be used to determine the reaction kinetics of a two-dimensional reaction. As a proof of principle, we study the photocatalytic reduction of p-nitrothiophenol. A study of the reaction rate and dilution effects leads to the conclusion that a dimerization must take place as one of the reaction steps.
Keywords
heterogeneous catalysis, Raman spectroscopy, reaction kinetics, self-assembly, surface-enhanced Raman scattering, SELF-ASSEMBLED MONOLAYERS, IN-SITU, P-NITROTHIOPHENOL, CHEMICAL-REACTIONS, ELECTROCHEMICAL REDUCTION, ALLOY NANOPARTICLES, CATALYTIC-REACTIONS, SILVER ELECTRODE, AG NANOPARTICLES, SINGLE-MOLECULE
Citation
van Schrojenstein Lantman, E, Gijzeman, O L J, Mank, A J G & Weckhuysen, B M 2014, 'Investigation of the Kinetics of a Surface Photocatalytic Reaction in Two Dimensions with Surface-enhanced Raman Scattering', ChemCatChem, vol. 6, no. 12, pp. 3342-3346. https://doi.org/10.1002/cctc.201402647