Periodic DFT calculations using plane waves basis sets with the GGA formalism were performed in order to study the behavior of the View the MathML source uranyl ion at the water–Ni(1 1 1) interface. First, the adsorption of water molecules interacting with an optimized surface model has been studied. At low coverage, isolated water molecules adsorb preferentially on top of the surface nickel atoms, the plane defined by the H2O molecule being almost parallel to the surface. When the water coverage increases from 1/9 ML to 2/3 ML (ML = monolayer coverage), hydrogen bonds are created leading to the formation of water hexamers, as suggested experimentally on Ni(1 1 1) and other metallic surfaces [A. Michaelides, A. Alavi, D.A. King, Physical Re...
We have used temperature-programmed desorption in combination with specular and off-specular high re...
Periodic density functional theory calculations were employed to investigate the coadsorption patter...
In the light of recent intensity-voltage low energy electron diffraction (LEED-IV) experiments [Surf...
The adsorption of water on Ni(110) has been studied by electron stimulated desorption ion angular di...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
Initial water deposition on the moderately reactive precious metal surface Ru(0001) has been thought...
The initial stages of water adsorption on the Pd(111) and Ru(0001) surfaces have been investigated e...
Materials that bind strongly to water structure the contact layer, modifying its chemical and physic...
There are few molecules, if any, more important than water. Yet remarkably little is known about how...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
This article explores the wetting behavior of b-type nickel hydroxide, b-Ni(OH)2, and nickel oxyhydr...
Ce travail, effectué dans le cadre d’une collaboration entre l’IPN d’Orsay et EDF, contribue aux étu...
The mechanism of hydrogen oxidation reaction (HOR) in Ni(111) is well-known and it happens through V...
The adsorption of OH on Ni(111) has been investigated by a combination of density functional theory ...
We have used temperature-programmed desorption in combination with specular and off-specular high re...
Periodic density functional theory calculations were employed to investigate the coadsorption patter...
In the light of recent intensity-voltage low energy electron diffraction (LEED-IV) experiments [Surf...
The adsorption of water on Ni(110) has been studied by electron stimulated desorption ion angular di...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
Initial water deposition on the moderately reactive precious metal surface Ru(0001) has been thought...
The initial stages of water adsorption on the Pd(111) and Ru(0001) surfaces have been investigated e...
Materials that bind strongly to water structure the contact layer, modifying its chemical and physic...
There are few molecules, if any, more important than water. Yet remarkably little is known about how...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
This article explores the wetting behavior of b-type nickel hydroxide, b-Ni(OH)2, and nickel oxyhydr...
Ce travail, effectué dans le cadre d’une collaboration entre l’IPN d’Orsay et EDF, contribue aux étu...
The mechanism of hydrogen oxidation reaction (HOR) in Ni(111) is well-known and it happens through V...
The adsorption of OH on Ni(111) has been investigated by a combination of density functional theory ...
We have used temperature-programmed desorption in combination with specular and off-specular high re...
Periodic density functional theory calculations were employed to investigate the coadsorption patter...
In the light of recent intensity-voltage low energy electron diffraction (LEED-IV) experiments [Surf...