Publication | Open Access
Scaling Properties of Adsorption Energies for Hydrogen-Containing Molecules on Transition-Metal Surfaces
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Citations
22
References
2007
Year
Dehydrogenation ReactionsEngineeringComputational ChemistryChemistryChemical EngineeringScaling ModelMolecular KineticsMaterials ScienceHydrogen-containing MoleculesChemisorptionPhysical ChemistryAdsorptionQuantum ChemistryHydrogenAdsorption EnergyAdsorption EnergiesHydrogen TransitionSurface ChemistryNatural SciencesSurface ScienceApplied PhysicsTransition-metal SurfacesChemical KineticsSurface Reactivity
Density functional theory calculations are presented for CHx, x=0,1,2,3, NHx, x=0,1,2, OHx, x=0,1, and SHx, x=0,1 adsorption on a range of close-packed and stepped transition-metal surfaces. We find that the adsorption energy of any of the molecules considered scales approximately with the adsorption energy of the central, C, N, O, or S atom, the scaling constant depending only on x. A model is proposed to understand this behavior. The scaling model is developed into a general framework for estimating the reaction energies for hydrogenation and dehydrogenation reactions.
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