Producción CientíficaUnderstanding the interaction of hydrogen with layered materials is crucial in the fields of sensors, catalysis, fuel cells and hydrogen storage, among others. Density functional theory, improved by the introduction of van der Waals dispersion forces, provides an efficient and practical workbench to investigate the interaction of molecular and atomic hydrogen with WS2 multilayers and nanotubes. We find that H2 physisorbs on the surface of those materials on top of W atoms, while atomic H chemisorbs on top of S atoms. In the case of nanotubes, the chemisorption strength is sensitive to the nanotube diameter. Diffusion of H2 on the surface of WS2 encounters quite small activation barriers whose magnitude helps to explain ...
Interaction between hydrogen molecules and bare as well as functionalized single-wall carbon nanotub...
The sorption of hydrogen between the layers of the multilayered wall of nanotubular TiO2 was studied...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Understanding the interaction of hydrogen with layered materials is crucial in the fields of sensors...
Producción CientíficaThe chemical configuration and interaction mechanism of hydrogen adsorbed in in...
In this work we investigate the inorganic nanotubes of layered tungsten disulfide, as material for h...
The chemical configuration and interaction mechanism of hydrogen adsorbed in inorganic nanoparticles...
We have studied, by first-principles methods, the interaction of molecular hydrogen with a double-wa...
We have studied, by first-principles methods, the interaction of molecular hydrogen with a double-wa...
Carbon single-wall nanotubes (SWNTs) are capable of adsorbing hydrogen quickly, to high density, at ...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
For increasing scalability and reducing cost, transition metal dichalcogenides-based electrocatalyst...
We report a first-principles study, which demonstrates that a single Ti atom coated on a single-wall...
Catalytic activity often stems from surface atoms with dangling bonds. However, recent experiments s...
Interaction between hydrogen molecules and bare as well as functionalized single-wall carbon nanotub...
The sorption of hydrogen between the layers of the multilayered wall of nanotubular TiO2 was studied...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Understanding the interaction of hydrogen with layered materials is crucial in the fields of sensors...
Producción CientíficaThe chemical configuration and interaction mechanism of hydrogen adsorbed in in...
In this work we investigate the inorganic nanotubes of layered tungsten disulfide, as material for h...
The chemical configuration and interaction mechanism of hydrogen adsorbed in inorganic nanoparticles...
We have studied, by first-principles methods, the interaction of molecular hydrogen with a double-wa...
We have studied, by first-principles methods, the interaction of molecular hydrogen with a double-wa...
Carbon single-wall nanotubes (SWNTs) are capable of adsorbing hydrogen quickly, to high density, at ...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
We investigate the interaction of the H-2 molecule with a graphene layer and with a small-radius car...
For increasing scalability and reducing cost, transition metal dichalcogenides-based electrocatalyst...
We report a first-principles study, which demonstrates that a single Ti atom coated on a single-wall...
Catalytic activity often stems from surface atoms with dangling bonds. However, recent experiments s...
Interaction between hydrogen molecules and bare as well as functionalized single-wall carbon nanotub...
The sorption of hydrogen between the layers of the multilayered wall of nanotubular TiO2 was studied...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...