Title of article :
The effect of topological defects and oxygen adsorption on the electronic transport properties of single-walled carbon-nanotubes
Author/Authors :
M. Grujicic، نويسنده , , S. G. Cao، نويسنده , , R. Singh، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
Ab initio density functional theory (DFT) calculations of the interactions between isolated infinitely-long semiconducting zig-zag (10, 0) or isolated infinitely-long metallic arm-chair (5, 5) single-walled carbon-nanotubes (SWCNTs) and single oxygen-molecules are carried out in order to determine the character of molecular-oxygen adsorption and its effect on electronic transport properties of these SWCNTs. A Green’s function method combined with a nearest-neighbor tight-binding Hamiltonian in a non-orthogonal basis is used to compute the electrical conductance of SWCNTs and its dependence on the presence of topological defects in SWCNTs and of molecular-oxygen adsorbates. The computational results obtained show that in both semiconducting and metallic SWCNTs, oxygen-molecules are physisorbed to the defect-free nanotube walls, but when such walls contain topological defects, oxygen-molecules become strongly chemisorbed. In semiconducting (10, 0) SWCNTs, physisorbed O2-molecules are found to significantly increase electrical conductance while the effect of 7-5-5-7 defects is practically annulled by chemisorbed O2-molecules. In metallic (5, 5) SWCNTs, both O2 adsorbates and 7-5-5-7 defects are found to have a relatively small effect on electrical conductance of these nanotubes.
Keywords :
Adsorption , Carbon-nanotubes , Density functional theory (DFT) calculations , Electronic transport properties
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science