• Title of article

    Interplay between molecular adsorption and metal–support interaction for small supported metal clusters: CO and C2H4 adsorption on image-Al2O3

  • Author/Authors

    Manuel Corral Valero، نويسنده , , Pascal Raybaud، نويسنده , , Philippe Sautet، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    17
  • From page
    339
  • To page
    355
  • Abstract
    The adsorption of CO and C2H4 molecules was investigated on Pd4 clusters supported on two relevant models of γ-alumina surfaces, the nonhydroxylated (100) surface and the hydroxylated (110) surface, by means of density functional theory (DFT) calculations using periodic boundary conditions. The hollow image mode is the most stable geometry for CO adsorption whatever the γ-alumina surface, whereas the preferred mode for ethylene depends on the supportʹs surface. In particular, the π mode of ethylene is stabilized when the Pd4 cluster is deposited on the hydroxylated (110) surface. The calculations demonstrate an important interplay between molecular adsorption and cluster–oxide interaction. The deposited cluster is not a frozen object, but it responds to the molecular adsorption by relaxing its geometry and changing its bonding with the oxide support. In a counterintuitive manner, molecular adsorption on the particle reinforces its interaction with the oxide in several cases. An energy decomposition scheme is proposed to give insight into the energy trends observed. Two key energetic contributions are put forward: substrate relaxation and metal–support interaction energies. A detailed electronic analysis before and after adsorption is proposed. The combined effect of the surface ligand groups (O and Al, or OH depending on the hydration state) and of the molecular adsorbate can produce specific synergy from electronic effects between an electron donor surface O atom and an electron acceptor CO adsorbate.
  • Keywords
    Zeolite Beta , Molybdenum , In situ synthesis , atomic layer deposition , Surface hydrophilicity , Protective coatings , Microreactor , Ethylene ammoxidation , Acetonitrile , Thin zeolitic coatings , Surface roughness
  • Journal title
    Journal of Catalysis
  • Serial Year
    2007
  • Journal title
    Journal of Catalysis
  • Record number

    1225063