The adsorption of CO on the surface of metals such as Pt(111) is of great interest owing to the industrial importance of the catalytic oxidation of pollutant CO. To date, reliable high-level calculations of this process have not been possible, a situation often referred to as the "CO/Pt(111) puzzle". Standard generalized-gradient-approximation density functional theory approaches fail to capture key details of the binding, such as the location of the adsorption site, while cluster approaches using alternative methods show some but insufficient improvement. Using a new computational methodology combining hybrid density functionals containing non-local Hartree-Fock exchange with periodic imaging plane-wave-based techniques, we demonstrate tha...
The so-called CO/Pt(111) puzzle, the experimentally demonstrated preference of CO to adsorb on the t...
: Based on density functional formalism, we investigate the site preference for the adsorption of CO...
CO and O adsorption and co-adsorption and CO oxidation oil Pt(111) and Pt(3)Ni(111) surfaces were st...
The adsorption of CO on the surface of metals such as Pt(111) is of great interest owing to the indu...
A linear combination of atomic orbitals (LCAO) approach was employed to obtain density functional th...
A linear combination of atomic orbitals (LCAO) approach was employed to obtain density functional th...
Traditionally, catalytic processes are calculated using the total energy approach from density funct...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
The so-called CO/Pt(111) puzzle, the experimentally demonstrated preference of CO to adsorb on the t...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
Carbon monoxide (CO) adsorption on Pt(111) is a bellwether system for surface science, a puzzle for ...
An atomistic interaction potential for adsorbate/surface systems is presented, based on the modified...
We propose a model for CO chemisorption on late transition metal, noble metal, and main-group surfac...
The so-called CO/Pt(111) puzzle, the experimentally demonstrated preference of CO to adsorb on the t...
: Based on density functional formalism, we investigate the site preference for the adsorption of CO...
CO and O adsorption and co-adsorption and CO oxidation oil Pt(111) and Pt(3)Ni(111) surfaces were st...
The adsorption of CO on the surface of metals such as Pt(111) is of great interest owing to the indu...
A linear combination of atomic orbitals (LCAO) approach was employed to obtain density functional th...
A linear combination of atomic orbitals (LCAO) approach was employed to obtain density functional th...
Traditionally, catalytic processes are calculated using the total energy approach from density funct...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
The so-called CO/Pt(111) puzzle, the experimentally demonstrated preference of CO to adsorb on the t...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
Carbon monoxide (CO) adsorption on Pt(111) is a bellwether system for surface science, a puzzle for ...
An atomistic interaction potential for adsorbate/surface systems is presented, based on the modified...
We propose a model for CO chemisorption on late transition metal, noble metal, and main-group surfac...
The so-called CO/Pt(111) puzzle, the experimentally demonstrated preference of CO to adsorb on the t...
: Based on density functional formalism, we investigate the site preference for the adsorption of CO...
CO and O adsorption and co-adsorption and CO oxidation oil Pt(111) and Pt(3)Ni(111) surfaces were st...