Physisorption and storage of molecular hydrogen on single-walled carbon nanotube (SWCNT) of various diameters and chiralities are studied by means of classical molecular dynamics (MD) simulations and a force field validated using DFT-D2 and CCSD(T) calculations. A nonrigid carbon nanotube model is implemented with stretching (C−C) and valence angle potentials (C− C−C) formulated as Morse and Harmonic cosine potentials, respectively. Our results evidence that the standard Lennard-Jones potential fails to describe the H2−H2 binding energies. Therefore, our simulations make use of a potential that contains two-body term with parameters obtained from fitting CCSD(T)/CBS binding energies. From our MD simulations, we have analyzed the interaction...
Physisorption of molecular hydrogen on single-walled carbon nanotubes (SWCNTs) is important for its ...
The work presented in this thesis addresses the issues concerning the use of carbon nanotube as a st...
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...
The defect effect on hydrogen adsorption on single-walled carbon nanotubes (SWNTs) has been studied ...
. This work presents step-by-step procedure of modeling accurate interaction potential energy betwee...
DFT calculations have been performed to study noncovalent interactions of a hydrogen molecule and si...
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...
Investigation of the energetic and structural features of physical adsorption of molecular hydrogen ...
The potential energies of a single H2 inside and outside an armchair single-walled carbon nanotube (...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
Abstract Grand canonical Monte Carlo molecular simulations were carried out for hydrogen adsorption ...
We present diffusion Monte Carlo calculations of D2 adsorbed inside a narrow carbon nanotube. The on...
Interaction between hydrogen molecules and bare as well as functionalized single-wall carbon nanotub...
Physisorption of molecular hydrogen on single-walled carbon nanotubes (SWCNTs) is important for its ...
The work presented in this thesis addresses the issues concerning the use of carbon nanotube as a st...
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...
The defect effect on hydrogen adsorption on single-walled carbon nanotubes (SWNTs) has been studied ...
. This work presents step-by-step procedure of modeling accurate interaction potential energy betwee...
DFT calculations have been performed to study noncovalent interactions of a hydrogen molecule and si...
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...
Investigation of the energetic and structural features of physical adsorption of molecular hydrogen ...
The potential energies of a single H2 inside and outside an armchair single-walled carbon nanotube (...
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotube...
Abstract Grand canonical Monte Carlo molecular simulations were carried out for hydrogen adsorption ...
We present diffusion Monte Carlo calculations of D2 adsorbed inside a narrow carbon nanotube. The on...
Interaction between hydrogen molecules and bare as well as functionalized single-wall carbon nanotub...
Physisorption of molecular hydrogen on single-walled carbon nanotubes (SWCNTs) is important for its ...
The work presented in this thesis addresses the issues concerning the use of carbon nanotube as a st...
The physisorption of molecular hydrogen in BC3 composite single-walled nanotube, investigated using ...