DFT calculations have been performed to study noncovalent interactions of a hydrogen molecule and single-walled carbon nanotubes (SWCNTs) of various diameters. Understanding these interactions is crucial for the development of systems for hydrogen storage and delivery. The barrier and barrier-free introduction of a hydrogen molecule into SWCNTs is observed. It has been found that hydrogen molecules bind differently onto SWCNTs, depending on their diameters and the orientation of an H2 molecule inside the SWCNT. The binding inside SWCNTs with small diameters ((3,3); (4,4)) is very unfavorable; the opposite situation is in the case of larger ((5,5); (6,6)) SWCNTs. Finally, in the case of ((7,7); (8,8)) SWCNTs, the hydrogen binding energies de...
The generalized gradient approximation (GGA) to density functional theory (DFT) calculations indicat...
The defect effect on hydrogen adsorption on single-walled carbon nanotubes (SWNTs) has been studied ...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
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...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
Recent reports continue to suggest high hydrogen storage capacities for some carbon nanostructures d...
We have investigated atomic and electronic structures of hydrogen-chemisorbed single-walled carbon n...
Physisorption and storage of molecular hydrogen on single-walled carbon nanotube (SWCNT) of various ...
One of the main challenges for the future hydrogen economy is finding a safe and efficient way to st...
The potential energies of a single H2 inside and outside an armchair single-walled carbon nanotube (...
The physisorption of molecular hydrogen in BC3 composite single-walled nanotube, investigated using ...
We present systematic molecular dynamics simulation studies of hydrogen storage in single walled car...
Investigation of the energetic and structural features of physical adsorption of molecular hydrogen ...
Abstract.A comprehensive studies on hydrogen adsorption and storage in carbon nanotubes CNTs have be...
The generalized gradient approximation (GGA) to density functional theory (DFT) calculations indicat...
The defect effect on hydrogen adsorption on single-walled carbon nanotubes (SWNTs) has been studied ...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
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...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
Recent reports continue to suggest high hydrogen storage capacities for some carbon nanostructures d...
We have investigated atomic and electronic structures of hydrogen-chemisorbed single-walled carbon n...
Physisorption and storage of molecular hydrogen on single-walled carbon nanotube (SWCNT) of various ...
One of the main challenges for the future hydrogen economy is finding a safe and efficient way to st...
The potential energies of a single H2 inside and outside an armchair single-walled carbon nanotube (...
The physisorption of molecular hydrogen in BC3 composite single-walled nanotube, investigated using ...
We present systematic molecular dynamics simulation studies of hydrogen storage in single walled car...
Investigation of the energetic and structural features of physical adsorption of molecular hydrogen ...
Abstract.A comprehensive studies on hydrogen adsorption and storage in carbon nanotubes CNTs have be...
The generalized gradient approximation (GGA) to density functional theory (DFT) calculations indicat...
The defect effect on hydrogen adsorption on single-walled carbon nanotubes (SWNTs) has been studied ...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...