Metal modified metal oxides are promising and economical catalysts for important processes such as CO oxidation and the partial oxidation of methanol. The present work is to investigate, by density functional theory, the electronic and geometric structures of metal (M = Au, Pt, Pd, or Ru) bilayer modified ∞-Fe2O3(0001) catalysts, focusing on the synergistic effect at the interface between the metal bilayer and ∞-Fe2O3( 0001) support and its connection with its catalytic activity. It is found that the synergistic effect is largely dependent on the localized electron gain, electron transfer from Fe atoms to the dz2 orbitals of the metal bilayer, and interfacial metallic/ionic bonding. Such synergistic effect is most pronounced for ∞-Fe2O3 cat...
The metal-support electronic interaction of dispersed Pt, Pd and Au layers on γ-Al2O3 is studied by...
Density functional theory calculations are performed on the monometallic (Fe or Ni) bilayer modified...
Noble metal alloys are one of the most commonly used heterogeneous catalysts. During many reactions,...
In this study, density functional theory calculation is applied to examine the interfacial electroni...
One of the most important advances in modern theoretical surface science and catalysis research has ...
Extensive first principles calculations are carried out to investigate Au monomers and dimers sup- p...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
© The formation of metal-oxide interfaces in catalytic systems exhibits a synergistic phenomenon bet...
First principles spin-polarized total energy calculations using density functional theory (DFT) with...
In these last years large research efforts have been devoted to the synthesis and investigation of r...
Understanding the structure-activity relationship over silica-supported Au-based bimetallic nanocata...
Tuning the atomic interface configuration of noble metals (NMs) and transition-metal oxides is an ef...
First principles spin-polarized total energy calculations using density functional theory (DFT) with...
The selective oxidation of methanol to formaldehyde with molecular O-2 on Au-Pd alloy surfaces has b...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
The metal-support electronic interaction of dispersed Pt, Pd and Au layers on γ-Al2O3 is studied by...
Density functional theory calculations are performed on the monometallic (Fe or Ni) bilayer modified...
Noble metal alloys are one of the most commonly used heterogeneous catalysts. During many reactions,...
In this study, density functional theory calculation is applied to examine the interfacial electroni...
One of the most important advances in modern theoretical surface science and catalysis research has ...
Extensive first principles calculations are carried out to investigate Au monomers and dimers sup- p...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
© The formation of metal-oxide interfaces in catalytic systems exhibits a synergistic phenomenon bet...
First principles spin-polarized total energy calculations using density functional theory (DFT) with...
In these last years large research efforts have been devoted to the synthesis and investigation of r...
Understanding the structure-activity relationship over silica-supported Au-based bimetallic nanocata...
Tuning the atomic interface configuration of noble metals (NMs) and transition-metal oxides is an ef...
First principles spin-polarized total energy calculations using density functional theory (DFT) with...
The selective oxidation of methanol to formaldehyde with molecular O-2 on Au-Pd alloy surfaces has b...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
The metal-support electronic interaction of dispersed Pt, Pd and Au layers on γ-Al2O3 is studied by...
Density functional theory calculations are performed on the monometallic (Fe or Ni) bilayer modified...
Noble metal alloys are one of the most commonly used heterogeneous catalysts. During many reactions,...