Methane adsorption at Ca decorated single wall carbon nanotubes has been studied by ab initio total energy calculations based on the density functional theory. The adsorption configurations have been studied by using various exchange-correlation energy functionals also including two possible long-range interaction correction schemes. Our calculations show that methane adsorption at Ca decorated carbon nanotubes is markedly enhanced when impurity atoms are considered as individual adsorption sites. We demonstrate that up to six CH4 molecules can bind at a single Ca impurity at room temperature. The phenomenon responsible for the measured adsorption energy is recognized as a Kubas-type interaction that involves the orbital overlap between the...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
An ab initio density functional theory (DFT) study with correction for dispersive interactions was p...
In this paper we investigate methane packing in single-walled carbon nanotubes. We employ classical ...
We employ dispersion-corrected density functional theory to study adsorption of CH4 molecule on a si...
We employ dispersion-corrected density functional theory to study adsorption of CH4 molecule on a si...
Methane adsorption onto single-wall boron nitride nanotubes (BNNTs) and carbon nanotubes (CNTs) was ...
We investigate the prospect of methane gas storage in carbon nanotubes, and in particular we determi...
We survey various molecular structures which have been proposed as possible nanocontainers for metha...
ABSTRACT: Bundles of single-walled nanotubes are promising candidates for storage of hydrogen, metha...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
ABSTRACT: Adsorption is an important issue both in the estimation of natural gas reserves and effici...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
Adsorption is an important issue both in the estimation of natural gas reserves and efficient stor...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
An ab initio density functional theory (DFT) study with correction for dispersive interactions was p...
In this paper we investigate methane packing in single-walled carbon nanotubes. We employ classical ...
We employ dispersion-corrected density functional theory to study adsorption of CH4 molecule on a si...
We employ dispersion-corrected density functional theory to study adsorption of CH4 molecule on a si...
Methane adsorption onto single-wall boron nitride nanotubes (BNNTs) and carbon nanotubes (CNTs) was ...
We investigate the prospect of methane gas storage in carbon nanotubes, and in particular we determi...
We survey various molecular structures which have been proposed as possible nanocontainers for metha...
ABSTRACT: Bundles of single-walled nanotubes are promising candidates for storage of hydrogen, metha...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
ABSTRACT: Adsorption is an important issue both in the estimation of natural gas reserves and effici...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
We present a high-level ab initio investigation of the effects of model size and curvature on the ex...
Adsorption is an important issue both in the estimation of natural gas reserves and efficient stor...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
Since their discovery and isolation graphene and carbon nanotubes have fascinated both the scientifi...
An ab initio density functional theory (DFT) study with correction for dispersive interactions was p...
In this paper we investigate methane packing in single-walled carbon nanotubes. We employ classical ...