Publication | Open Access
Enhancing dissociative chemisorption of H <sub>2</sub> O on Cu(111) via vibrational excitation
98
Citations
43
References
2012
Year
EngineeringMode SelectivityVibrational ModesComputational ChemistryChemistryDissociative ChemisorptionMolecular KineticsVibrational ExcitationInorganic ChemistryChemisorptionPhysical ChemistryHydrogenQuantum ChemistrySurface ChemistryNatural SciencesSurface ScienceApplied PhysicsChemical KineticsSurface Reactivity
The dissociative chemisorption of water is an important step in many heterogeneous catalytic processes. Here, the mode selectivity of this process was examined quantum mechanically on a realistic potential energy surface determined by fitting planewave density functional calculations spanning a large configuration space. The quantum dynamics of the surface reaction were characterized by a six-dimensional model including all important internal coordinates of H(2)O and its distance to the surface. It was found that excitations in all three vibrational modes are capable of enhancing reactivity more effectively than increasing translational energy, consistent with the "late" transition state in the reaction path.
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