First-principles, density functional calculations show that O2 adsorbed single-wall carbon nanotubes (SWNT) show dramatic differences depending on the type of the tube. Upon O2 physisorption, the zig-zag SWNT remains semiconducting, while the metallicity of the armchair is lifted for the spin-down bands. The spin-up bands continue to cross at the Fermi level, and make the system metallic only for one type of spin. The singlet bound state of O2 occurs at the bridge site of the (6,6) SWNT at small distance from the surface of the tube. However, for the hollow site, the molecule dissociates when it comes close to the surface. © 2003 Elsevier B.V. All rights reserved
The study of oxygen chemisorption on single-walled carbon nanotubes generally relies on simple atomi...
The interaction of oxygen with Fe nanowire-filled single-walled carbon nanotubes (SWCNT) was investi...
Plane-wave density functional theory has been used to study oxygen adsorption on graphene, graphite,...
Cataloged from PDF version of article.First-principles, density functional calculations show that O-...
Spin unrestricted density functional theory (DFT) calculations have been used to investigate the mol...
This paper presents an extensive and systematic analysis of the oxygenation of semiconducting and me...
We present a study on the kinetics of oxygen adsorption and desorption from single-wall carbon nanot...
Our study of the adsorption of oxygen molecules on individual semiconductiong single-walled carbon n...
In this paper, density-functional-theory calculations show that O-2 and H2O behave differently when ...
Spin-polarized density functional calculations are used to study the adsorption of O atoms and O2 mo...
Spin-polarized density functional calculations are used to study the adsorption of O atoms and O2 mo...
Density-functional-theory based calculations of two single-walled carbon nanotubes of different chir...
Density-functional-theory based calculations of two single-walled carbon nanotubes of different chir...
We investigated the effect of local curvature on the adsorption of oxygen on single-walled carbon na...
We study the binding of molecular oxygen to a graphene sheet and to a (8,0) single walled carbon nan...
The study of oxygen chemisorption on single-walled carbon nanotubes generally relies on simple atomi...
The interaction of oxygen with Fe nanowire-filled single-walled carbon nanotubes (SWCNT) was investi...
Plane-wave density functional theory has been used to study oxygen adsorption on graphene, graphite,...
Cataloged from PDF version of article.First-principles, density functional calculations show that O-...
Spin unrestricted density functional theory (DFT) calculations have been used to investigate the mol...
This paper presents an extensive and systematic analysis of the oxygenation of semiconducting and me...
We present a study on the kinetics of oxygen adsorption and desorption from single-wall carbon nanot...
Our study of the adsorption of oxygen molecules on individual semiconductiong single-walled carbon n...
In this paper, density-functional-theory calculations show that O-2 and H2O behave differently when ...
Spin-polarized density functional calculations are used to study the adsorption of O atoms and O2 mo...
Spin-polarized density functional calculations are used to study the adsorption of O atoms and O2 mo...
Density-functional-theory based calculations of two single-walled carbon nanotubes of different chir...
Density-functional-theory based calculations of two single-walled carbon nanotubes of different chir...
We investigated the effect of local curvature on the adsorption of oxygen on single-walled carbon na...
We study the binding of molecular oxygen to a graphene sheet and to a (8,0) single walled carbon nan...
The study of oxygen chemisorption on single-walled carbon nanotubes generally relies on simple atomi...
The interaction of oxygen with Fe nanowire-filled single-walled carbon nanotubes (SWCNT) was investi...
Plane-wave density functional theory has been used to study oxygen adsorption on graphene, graphite,...