Ab initio molecular dynamics simulations of coadsorbed hydroxyl and water species on a Rh(1 1 1) surface have been performed using the Perdew-Wang 91 (PW91) density functional. The results reveal the possibility of an apparent diffusion of the OH on the surface through a Grotthus-like mechanism. The estimated proton exchange rate of around 3 ps(-1) is higher compared to that in bulk water. The surface-bonded hydroxyl forms a complex with two neighboring water molecules. The complex has hydrogen bond distances different from those between water molecules. (C) 2002 Elsevier Science B.V. All rights reserve
The concentration of hydronium and hydroxide at the water–air interface has been debated for a long ...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...
Ab initio molecular dynamics simulations of coadsorbed hydroxyl and water species on a Rh(1 1 1) sur...
Density functional theory calculations and classical Monte Carlo simulations are applied to study th...
Density functional theory calculations are used to explore water adsorption on BaO(001). The stable ...
The air-water interface has been a subject of extensive theoretical and experimental studies due to ...
Ab initio density functional theory molecular dynamics simulations of the solvated states of the hyd...
We present the first results of a density functional theory molecular dynamics of the hydroxyl radic...
This paper presents a detailed study of a water adlayer adsorbed on Pt(111) and Rh(111) surfaces usi...
R.K. is supported by the School of Chemical Engineering of Aalto University through a doctoral schol...
Hydrogen bonding between water molecules and the rutile (110) surface is investigated by molecular d...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Molecular dynamics simulations of four crystallographic terminations of goethite (α-FeOOH) in contac...
The concentration of hydronium and hydroxide at the water–air interface has been debated for a long ...
The concentration of hydronium and hydroxide at the water–air interface has been debated for a long ...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...
Ab initio molecular dynamics simulations of coadsorbed hydroxyl and water species on a Rh(1 1 1) sur...
Density functional theory calculations and classical Monte Carlo simulations are applied to study th...
Density functional theory calculations are used to explore water adsorption on BaO(001). The stable ...
The air-water interface has been a subject of extensive theoretical and experimental studies due to ...
Ab initio density functional theory molecular dynamics simulations of the solvated states of the hyd...
We present the first results of a density functional theory molecular dynamics of the hydroxyl radic...
This paper presents a detailed study of a water adlayer adsorbed on Pt(111) and Rh(111) surfaces usi...
R.K. is supported by the School of Chemical Engineering of Aalto University through a doctoral schol...
Hydrogen bonding between water molecules and the rutile (110) surface is investigated by molecular d...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Molecular dynamics simulations of four crystallographic terminations of goethite (α-FeOOH) in contac...
The concentration of hydronium and hydroxide at the water–air interface has been debated for a long ...
The concentration of hydronium and hydroxide at the water–air interface has been debated for a long ...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...