Effects of van der Waals density functional corrections on trends in furfural adsorption and hydrogenation on close-packed transition metal surfaces.

dc.citation.doi10.1016/j.susc.2013.12.001en_US
dc.citation.epage59en_US
dc.citation.jtitleSurface Scienceen_US
dc.citation.spage51en_US
dc.citation.volume622en_US
dc.contributor.authorLiu, Bin
dc.contributor.authorCheng, Lei
dc.contributor.authorCurtiss, Larry
dc.contributor.authorGreeley, Jeffrey
dc.contributor.authoreidbinliuen_US
dc.date.accessioned2014-05-09T13:51:09Z
dc.date.available2014-05-09T13:51:09Z
dc.date.issued2014-04-01
dc.date.published2014en_US
dc.description.abstractThe hydrogenation of furfural to furfuryl alcohol on Pd(111), Cu(111) and Pt(111) is studied with both standard Density Functional Theory (DFT)-GGA functionals and with van der Waals-corrected density functionals. VdWDF functionals, including optPBE, optB88, optB86b, and Grimme's method, are used to optimize the adsorption configurations of furfural, furfuryl alcohol, and related intermediates resulting from hydrogenation of furfural, and the results are compared to corresponding values determined with GGA functionals, including PW91 and PBE. On Pd(111) and Pt(111), the adsorption geometries of the intermediates are not noticeably different between the two classes of functionals, while on Cu(111),modest changes are seen in both the perpendicular distance and the orientation of the aromatic ringwith respect to the planar surface. In general, the binding energies increase substantially inmagnitude as a result of van derWaals contributions on all metals. In contrast, however, dispersion effects on the kinetics of hydrogenation are relatively small. It is found that activation barriers are not significantly affected by the inclusion of dispersion effects, and a Brønsted–Evans–Polanyi relationship developed solely fromPW91 calculations on Pd(111) is capable of describing corresponding results on Cu(111) and Pt(111), even when the dispersion effects are included. Finally, the reaction energies and barriers derived from the dispersion-corrected and pure GGA calculations are used to plot simple potential energy profiles for furfural hydrogenation to furfuryl alcohol on the three considered metals, and an approximately constant downshift of the energetics due to the dispersion corrections is observed.en_US
dc.identifier.urihttp://hdl.handle.net/2097/17723
dc.language.isoen_USen_US
dc.relation.urihttp://doi.org/10.1016/j.susc.2013.12.001en_US
dc.rightsThis Item is protected by copyright and/or related rights. You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s).
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/
dc.subjectFurfural hydrogenationen_US
dc.subjectPeriodic Density Functional Theoryen_US
dc.subjectVan der Waals density functionalen_US
dc.subjectLinear scaling relationshipen_US
dc.subjectBrønsted–Evans–Polanyi relationshipen_US
dc.titleEffects of van der Waals density functional corrections on trends in furfural adsorption and hydrogenation on close-packed transition metal surfaces.en_US
dc.typeArticle (author version)en_US

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