The bonding of atomic oxygen on Pt(111) and Rh(111) was examined using density functional theory in order to understand their different chemical properties. The oxygen-surface interactions were modeled by bonding atomic oxygen to 10-atom clusters of Pt and Ph designed to model the (111) surface. Density functional theory was applied using the local density and generalized gradient approximations; results were obtained for both double-zeta and triple-zeta basis sets. Optimized geometries and binding energies were computed and favorably compared to available experimental values. Interestingly, the ionic bonding in the two cases is nearly the same, based on the similarities in the charge on oxygen. The Hirshfeld charges on oxygen were -0.225 a...
We report on the chemical adsorption mechanism of atomic oxygen on the Pt(111) surface using angle-r...
Simulations based on density functional theory are used to study the electronic and electrostatic pr...
A central question in the field of heterogeneous catalysis is how surface structure and subsurface s...
The bonding of atomic oxygen on Pt(111) and Rh(111) was examined using density functional theory in ...
The bonding of atomic oxygen on Pt(111) and Rh(111) was examined using density functional theory in ...
We report on a computational study of the clean and oxygen-covered Rh(110) surface, based on density...
Adsorption of O, O-2, and OH on Pt(111), Pt(100), and Pt(110) surfaces was studied using periodic DF...
[[abstract]]Ab initio total energy calculations using density functional theory with the generalized...
Properties of the oxygen molecule, atomic oxygen, and intermediate products of its reduction, OH, OO...
A density functional theory (DFT) database of 66 Pt(111)/O formation energies is presented. We fit t...
We study the atomic oxygen adsorption on Pb(111) surface by using density-functional theory within t...
The effects of strain σ on the binding position preference of oxygen atoms and hydroxyl groups adsor...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Interactions of molecules and atoms with surfaces are vital to many modern technological application...
We report on the chemical adsorption mechanism of atomic oxygen on the Pt(111) surface using angle-r...
Simulations based on density functional theory are used to study the electronic and electrostatic pr...
A central question in the field of heterogeneous catalysis is how surface structure and subsurface s...
The bonding of atomic oxygen on Pt(111) and Rh(111) was examined using density functional theory in ...
The bonding of atomic oxygen on Pt(111) and Rh(111) was examined using density functional theory in ...
We report on a computational study of the clean and oxygen-covered Rh(110) surface, based on density...
Adsorption of O, O-2, and OH on Pt(111), Pt(100), and Pt(110) surfaces was studied using periodic DF...
[[abstract]]Ab initio total energy calculations using density functional theory with the generalized...
Properties of the oxygen molecule, atomic oxygen, and intermediate products of its reduction, OH, OO...
A density functional theory (DFT) database of 66 Pt(111)/O formation energies is presented. We fit t...
We study the atomic oxygen adsorption on Pb(111) surface by using density-functional theory within t...
The effects of strain σ on the binding position preference of oxygen atoms and hydroxyl groups adsor...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Interactions of molecules and atoms with surfaces are vital to many modern technological application...
We report on the chemical adsorption mechanism of atomic oxygen on the Pt(111) surface using angle-r...
Simulations based on density functional theory are used to study the electronic and electrostatic pr...
A central question in the field of heterogeneous catalysis is how surface structure and subsurface s...