Adsorption of Xe atoms on the TiO2(110) surface: A density functional study

dc.contributor.authorGomes, J.R.B.
dc.contributor.authorRamalho, J.P. Prates
dc.contributor.authorIllas, F.
dc.date.accessioned2012-11-29T16:15:46Z
dc.date.available2012-11-29T16:15:46Z
dc.date.issued2010
dc.date.updated2012-11-21T12:03:08Z
dc.description.abstractThe interaction of xenon atoms with the TiO2(1 1 0) surface of rutile has been studied by density functional theory methods. Five different possible adsorption sites on the relaxed and clean TiO2(1 1 0) surface and on two different type of oxygen vacancies possible on this oxide substrate have been considered. In the case of the defect-free substrate, and when compared with a previous study concerning the adsorption of Ar atoms also on TiO2(1 1 0), the xenon atom, as a larger and easier polarizable species, is shown to have a deeper physisorption well, as expected. Likewise, Xe atoms prefer to be bounded to positions nearby the outermost titanium atoms as found previously for Ar. This is in agreement with most studies concerning rare gases adsorbed on transition metal surfaces. In the case of the reduced surfaces, it is found that the interaction is more favourable in the protruding rows. The interaction is dominated by dispersion forces and DFT + dispersion energies are 3.5–5 times larger than the non-corrected DFT values and Xe-surface distances are smaller. Finally, an interesting correlation is obtained for the calculated interaction energies and the Xe–Ti distance.por
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dc.identifier.citationGomes, J.R.B.; Ramalho, J.P. Prates; Illas, F.Adsorption of Xe atoms on the TiO2(110) surface: A density functional study, Surface Science, 604, 3-4, 428-434, 2010.por
dc.identifier.doi10.1016/j.susc.2009.12.009
dc.identifier.urihttp://hdl.handle.net/10174/6125
dc.language.isoporpor
dc.peerreviewedyespor
dc.rightsrestrictedAccesspor
dc.subjectPhysical adsorptionpor
dc.subjectTitanium oxidepor
dc.subjectSurface defectspor
dc.subjectDensity functional calculationspor
dc.subjectNoble gasespor
dc.titleAdsorption of Xe atoms on the TiO2(110) surface: A density functional studypor
dc.typearticlepor

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