Density Functional Theory (DFT), based on both static and Born-Oppenheimer Molecular Dynamics approaches, has been used to investigate the effect of hydrogen bonds and temperature on the water monolayer adsorption on the rutile TiO2 (110) face. It was demonstrated that the difference between some previous theoretical results and experimental data is due to too slim slab thickness model and/or too small surface area. According to the present static calculations, water monolayer adsorbs molecularly on the five-fold titanium atoms of an optimised five-layer slab thickness, due to the stabilising lateral hydrogen bonds between molecules. From the molecular dynamics simulations, two adsorption mechanisms were described as a function of temperatu...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
The behavior of adsorbed water on oxides is of fundamental interest in many areas. Despite considera...
The interaction of water with titanium dioxide (TiO2) nanosheets has been studied under the framewor...
The adsorption of water on the TiO2(110) surface has become the model process in efforts to understa...
The accuracy of the theoretical description of materials properties in the framework of density func...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
We apply first-principles molecular dynamics and static calculations in the study of several layers ...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The effects of temperature and solvation on uranyl ion adsorption at the water/rutile TiO2(110) inte...
Equilibrium classical molecular dynamics (MD) simulations have been performed to investigate the vib...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Equilibrium classical molecular dynamics (MD) simulations have been performed to investigate the hyd...
XPS and periodic DFT calculations have been used to investigate water sorption on the TiO2 rutile (1...
International audienceChemical doping and other surface modifications have been used to engineer the...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
The behavior of adsorbed water on oxides is of fundamental interest in many areas. Despite considera...
The interaction of water with titanium dioxide (TiO2) nanosheets has been studied under the framewor...
The adsorption of water on the TiO2(110) surface has become the model process in efforts to understa...
The accuracy of the theoretical description of materials properties in the framework of density func...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
We apply first-principles molecular dynamics and static calculations in the study of several layers ...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The effects of temperature and solvation on uranyl ion adsorption at the water/rutile TiO2(110) inte...
Equilibrium classical molecular dynamics (MD) simulations have been performed to investigate the vib...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Equilibrium classical molecular dynamics (MD) simulations have been performed to investigate the hyd...
XPS and periodic DFT calculations have been used to investigate water sorption on the TiO2 rutile (1...
International audienceChemical doping and other surface modifications have been used to engineer the...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
The behavior of adsorbed water on oxides is of fundamental interest in many areas. Despite considera...
The interaction of water with titanium dioxide (TiO2) nanosheets has been studied under the framewor...