Density functional theory calculations have been used to investigate the adsorption of ethylene on Pd nanoclusters together with shifts in core-level binding energies of Pd atoms bonded to the adsorbate. The adsorption energy is found to correlate with the core-level shifts (CLS), which is consistent with the notion that the core-level binding energy is a measure of differences in cohesion. The correlation between adsorption energies and core-level shifts is found to be stronger than the correlation between adsorption energies and generalized coordination numbers, indicating that descriptors preferably should account for electronic effects explicitly. The advantages of CLS as a descriptor for the screening of adsorption properties is discus...
We use density functional theory to investigate the binding of propene to small mixed Au-Ag clusters...
Trends in adsorption energies as a function of transition metal differ for adsorbates that are attac...
The adsorption of ethylene at 100 K on clean and oxygen precovered Pd(1 1 1) surfaces and the therma...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Ethylene adsorption was studied by use of DFT/B3LYP with basis set 6-31G(d, p) in Gaussian' 03 softw...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Ethylene adsorption on a Ni-55 nanocluster was studied by Weal IS of the density functional theory (...
Density functional theory calculations were performed to investigate the structural and en...
none4noThe adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along ...
We use density functional theory to investigate the binding of propene to small mixed Au-Ag clusters...
Trends in adsorption energies as a function of transition metal differ for adsorbates that are attac...
The adsorption of ethylene at 100 K on clean and oxygen precovered Pd(1 1 1) surfaces and the therma...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations have been used to investigate the adsorption of ethylene on P...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Density functional theory calculations are used to investigate ethylene hydrogenation over palladium...
Ethylene adsorption was studied by use of DFT/B3LYP with basis set 6-31G(d, p) in Gaussian' 03 softw...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Fully optimized geometries and adsorption energies obtained from nonlocal density functional calcula...
Ethylene adsorption on a Ni-55 nanocluster was studied by Weal IS of the density functional theory (...
Density functional theory calculations were performed to investigate the structural and en...
none4noThe adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along ...
We use density functional theory to investigate the binding of propene to small mixed Au-Ag clusters...
Trends in adsorption energies as a function of transition metal differ for adsorbates that are attac...
The adsorption of ethylene at 100 K on clean and oxygen precovered Pd(1 1 1) surfaces and the therma...