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A dimer path for CO dissociation on PtSn

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journal contribution
posted on 2025-03-04, 10:03 authored by Matthias VandichelMatthias Vandichel, Henrik Grönbeck

Density functional theory calculations are used to investigate CO adsorption, dissociation and SnOX formation on Pt3Sn. We find that direct CO dissociation is prevented by high activation energies. An energetically feasible path is instead CO dimer formation followed by C–O bond cleavage. Dimers are formed in the presence of Sn adatoms which effectively stabilize anionic OCCO− species. The presence of Sn adatoms is crucial as dimers are unstable on Pt-only systems. The proposed mechanism may explain recent experimental observations of SnOX and C–C formation as PtxSn is exposed to CO.

History

Publication

Catalysis Science and Technology, 2019, 9, 695

Publisher

Royal Society of Chemistry

Department or School

  • Chemical Sciences

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