Density functional theory and molecular dynamics were used to study the adsorption of a water molecule on a graphene layer modified with titanium at high metal coverage, with the Ti atoms located above the centers of the carbon hexagons. TWO stable configurations for the titanium-graphene sheet were considered. One with one titanium atom per eight carbon atoms and another with one Ti atom per two C atoms. We found that the water molecule is adsorbed on both configurations, but it is dissociated in two different ways forming H, O and HO when the interaction is with the second configuration. (C) 2008 Elsevier Ltd. All rights reserved
cited By 37We perform density functional calculations to investigate The adsorption of molecular hyd...
While the bonding of molecular adsorbates to graphene has so far been characterized as physisorption...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
p. 12348–12356We have investigated the structure, adsorption, electronic states, and charge transfer...
We study the adsorption of hydrogen molecules on a titanium atom supported by a benzene molecule usi...
This study aims at generating fundamental knowledge of the interaction of hydrated protons (hydroniu...
We present the result of molecular-dynamics simulations of water adsorbed on top of a single graphen...
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The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
We investigate structural and electronic properties of water molecules adsorbed on graphene by using...
Using DFT simulations, we studied the interaction of a semifullerene C30 and a defected graphene lay...
A monatomic layer of graphite (MG or graphene) adsorbed on the (111) faces of transition metals Pt, ...
cited By 37We perform density functional calculations to investigate The adsorption of molecular hyd...
While the bonding of molecular adsorbates to graphene has so far been characterized as physisorption...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
p. 12348–12356We have investigated the structure, adsorption, electronic states, and charge transfer...
We study the adsorption of hydrogen molecules on a titanium atom supported by a benzene molecule usi...
This study aims at generating fundamental knowledge of the interaction of hydrated protons (hydroniu...
We present the result of molecular-dynamics simulations of water adsorbed on top of a single graphen...
Based on first-principles plane wave calculations, it was shown that boron substituted graphene with...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
We investigate structural and electronic properties of water molecules adsorbed on graphene by using...
Using DFT simulations, we studied the interaction of a semifullerene C30 and a defected graphene lay...
A monatomic layer of graphite (MG or graphene) adsorbed on the (111) faces of transition metals Pt, ...
cited By 37We perform density functional calculations to investigate The adsorption of molecular hyd...
While the bonding of molecular adsorbates to graphene has so far been characterized as physisorption...
We present a density functional theory study of water adsorption on metal surfaces. Prototype water ...