Compatibility between biological molecules and inorganic materials, such as crystalline metal oxides, is strongly dependent on the selectivity properties and the adhesion processes at the interface between the two systems. Among the many different aspects that affect the adsorption processes of peptides or proteins onto inorganic surfaces, such as the charge state of the amino acids, the peptide 3D structure, the surface roughness, the presence of vacancies or defects on and below the surface, a key role is certainly played by the water solvent whose molecules mediate the interaction. Then the surface hydration pattern may strongly affect the adsorption behavior of biological molecules. For the particular case of (101) anatase TiO2 surface ...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
Density functional theory (DFT) calculations at ONIOM DFT B3LYP/6-31G**-MD/UFF level are employed to...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
Arg, Lys and Asp amino acids are known to play a critical role in the adhesion of the RKLPDA enginee...
(101) anatase TiO2 surface in water ambient is an important system for the interaction of biocompat...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Titanium dioxide in the anatase configuration plays an increasingly important role for photo(electro...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
Density functional theory (DFT) calculations at ONIOM DFT B3LYP/6-31G**-MD/UFF level are employed to...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
Arg, Lys and Asp amino acids are known to play a critical role in the adhesion of the RKLPDA enginee...
(101) anatase TiO2 surface in water ambient is an important system for the interaction of biocompat...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Water adsorption and dissociation processes on pristine low-index TiO2 interfaces are important but ...
Titanium dioxide in the anatase configuration plays an increasingly important role for photo(electro...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
Density functional theory (DFT) calculations at ONIOM DFT B3LYP/6-31G**-MD/UFF level are employed to...
We have carried out classical molecular dynamics of various surfaces of TiO2 with its interface with...