Publication | Open Access
Probing the transition state region in catalytic CO oxidation on Ru
234
Citations
37
References
2015
Year
EngineeringChemistryOxidation ReactionElectronic Excited StateCatalyst ActivationCatalytic Co OxidationThermal CatalysisMaterials ScienceInorganic ChemistryPhysical ChemistryCatalysisQuantum ChemistryAdsorption SiteCatalytic ProcessTransition State RegionExcited State PropertyLaser PhotochemistryNatural SciencesApplied PhysicsSingle-atom CatalystOperando ExperimentChemical KineticsCarbon Monoxide
Femtosecond x-ray laser pulses are used to probe the carbon monoxide (CO) oxidation reaction on ruthenium (Ru) initiated by an optical laser pulse. On a time scale of a few hundred femtoseconds, the optical laser pulse excites motions of CO and oxygen (O) on the surface, allowing the reactants to collide, and, with a transient close to a picosecond (ps), new electronic states appear in the O K-edge x-ray absorption spectrum. Density functional theory calculations indicate that these result from changes in the adsorption site and bond formation between CO and O with a distribution of OC-O bond lengths close to the transition state (TS). After 1 ps, 10% of the CO populate the TS region, which is consistent with predictions based on a quantum oscillator model.
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