Publication | Open Access
Molecular adsorption on metal surfaces with van der Waals density functionals
101
Citations
39
References
2012
Year
EngineeringLondon Dispersion InteractionsComputational ChemistryChemistryMetal SurfacesMaterials ScienceMolecular AdsorptionNanotechnologyChemisorptionMolecular MaterialPhysical ChemistryAdsorptionQuantum ChemistryAdsorption EnergiesSurface FunctionalizationSurface ChemistryNatural SciencesSurface ScienceApplied PhysicsBda Binding GeometrySurface Reactivity
The adsorption of 1,4-benzenediamine (BDA) on Au(111) and azobenzene on Ag(111) is investigated using density functional theory (DFT) with the nonlocal van der Waals density functional (vdW-DF) and the semilocal Perdew-Burke-Ernzerhof functional. For BDA on Au(111), the inclusion of London dispersion interactions not only dramatically enhances the molecule-substrate binding, resulting in adsorption energies consistent with experimental results, but also significantly alters the BDA binding geometry. For azobenzene on Ag(111), vdW-DFs produce superior adsorption energies compared to those obtained with other dispersion-corrected DFT approaches. These results provide evidence for the applicability of the vdW-DF approach and serve as practical benchmarks for the investigation of molecules adsorbed on noble-metal surfaces.
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