The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using density functional theory with generalized gradient approximation and ultrasoft pseudopotentials. Calculations have been performed on 2x2 surface unit cells, corresponding to coverages of 0.25 ML, with spot checks on 3x3 surface unit cells (0.11 ML). On both surfaces, the authors find that water adsorbs flat on top of a surface atom, with binding energies of 0.35 and 0.25 eV, respectively, on Rh(111) and Ni(111), and is free to rotate in the surface plane. Barriers of 0.92 and 0.89 eV have to be overcome to dissociate the molecule into OH and H on the Rh(111) and Ni(111) surfaces, respectively. Further barriers of 1.03 and 0.97 eV need to be ...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
Funding Information: This work was supported by Business Finland through project Molecular Modelling...
Abstract: The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(11...
Water dissociation on clean and oxygen-preadsorbed transition metal surfaces was investigated by the...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
Steps at high-index metallic surfaces display higher chemical reactivity than close-packed surfaces ...
The adsorption of water on Ni(110) has been studied by electron stimulated desorption ion angular di...
The initial stages of water adsorption on the Pd(111) and Ru(0001) surfaces have been investigated e...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
Funding Information: This work was supported by Business Finland through project Molecular Modelling...
Abstract: The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(11...
Water dissociation on clean and oxygen-preadsorbed transition metal surfaces was investigated by the...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
Steps at high-index metallic surfaces display higher chemical reactivity than close-packed surfaces ...
The adsorption of water on Ni(110) has been studied by electron stimulated desorption ion angular di...
The initial stages of water adsorption on the Pd(111) and Ru(0001) surfaces have been investigated e...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The effect of carbon monoxide (CO) co-adsorption on the dissociation of water on the Ni(111) surface...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...