The Journal of Physical Chemistry C · 2016 · 55 citations · 39 references
Materials ScienceChemical EngineeringEngineeringSurface ChemistryComplete OxidationSurface ScienceChemisorptionSingle-atom CatalystEthanol Oxidation ReactionAlkaline ConditionsCatalysisNew InsightsChemistryMolecular CatalysisCatalyst ActivationChemical KineticsSurface ReactivityC–c Bond
Using a combination of experimental and computational methods, mainly FTIR and DFT calculations, new insights are provided here in order to better understand the cleavage of the C–C bond taking place during the complete oxidation of ethanol on platinum stepped surfaces. First, new experimental results pointing out that platinum stepped surfaces having (111) terraces promote the C–C bond breaking are presented. Second, it is computationally shown that the special adsorption properties of the atoms in the step are able to promote the C–C scission, provided that no other adsorbed species are present on the step, which is in agreement with the experimental results. In comparison with the (111) terrace, the cleavage of the C–C bond on the step has a significantly lower activation energy, which would provide an explanation for the observed experimental results. Finally, reactivity differences under acidic and alkaline conditions are discussed using the new experimental and theoretical evidence.
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Special points for Brillouin-zone integrations
Hendrik J. Monkhorst, J.D. Pack · Physical review. B, Solid state · 1976 · 68.3K citations
From molecules to solids with the DMol3 approach
B. Delley · The Journal of Chemical Physics · 2000 · 10.7K citations · Full text
Engineering, Theoretical Inorganic Chemistry, Dmol3 Approach +20