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  4. Dissociative adsorption of methane on surface oxide structures of pd-pt alloys
 
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2009
Journal Article
Title

Dissociative adsorption of methane on surface oxide structures of pd-pt alloys

Abstract
The dissociative adsorption of methane on variously oxidized Pd, Pt, and Pd-Pt surfaces is investigated using density functional theory as a step toward understanding the combustion of methane on these materials. For Pd-Pt alloys, models of surface oxide structures are built on the basis of known oxides on Pd and Pt. The methane adsorption energy presents large variations depending on the oxide structure and composition. Adsorption is endothermic on the bare Pd(111) metal surface as well as on stable thin layer oxide structures such as the (5 × 5) surface oxide on Pd(100) and the PtO 2-like oxide on Pt(111). Instead, large adsorption energies are obtained for the (100) surface of bulk PdO, for metastable mixed Pd 1-xPtxO4/3 oxide layers on Pt(100), and for Pd-Pt(111) surfaces covered with one oxygen monolayer. In the latter case, we find a net thermodynamic preference for a direct conversion of methane to methanol, which remains adsorbed on the oxidized metal substrates via weak hydrogen-bond interactions.
Author(s)
Dianat, A.
Seriani, N.
Ciacchi, L.C.
Pompe, W.
Cuniberti, G.
Bobeth, M.
Journal
Journal of physical chemistry. C, Nanomaterials and interfaces  
Open Access
DOI
10.1021/jp905689t
Language
English
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
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