We determine atomic and electronic structures of boron- and/or nitrogen-doped carbon nanotubes (CNTs) and carbon-doped boron nitride nanotubes (BN-NTs) of armchair and zigzag types using first-principles pseudopotential-based density functional theory calculations. For comparison, we also determine the atomic and electronic structures of two-dimensional honeycomb lattices of carbon (graphene) and boron nitride. Although carbon doping at either the B or N site in BN-NTs results in anti-ferromagnetically ordered semiconducting state, B or N doping in CNTs gives a simple shift in the Fermi energy and a nonmagnetic state
The pseudopotential calculations have been performed to study the effect of carbon impurit...
The electronic and structural properties of double-walled boron nitride (BN) nanotubes are studied u...
Tesis (Doctorado en Nanociencias y Materiales)"Carbon nanotubes are versatile materials with promisi...
We determine atomic and electronic structures of arm-chair and zigzag boron nitride nanotubes (BN-NT...
We have investigated, using first-principles calculations, the role of a substitutional carbon atom ...
We have investigated the electronic properties of defected boron nitride nanotubes (BNNTs) for spin-...
Electronic and geometrical aspects of the boron-nitride nanotubes are investigated using the first-p...
Carbon-doped boron nitride nanostructures including nanosheets, nanoribbons, and nanotubes have draw...
Based upon the similarities in properties between carbon- and BN-based (BN=boron nitride) materials,...
2D materials as well as quasi-1D materials exhibit fascinating optical and electronic properties. Bo...
Various molecular electronic properties of boron-nitride nanotube ring doped four different single-w...
By using the first-principles calculations, the electronic structure and quantum transport propertie...
AbstractThe structure of single walled armchair and zig-zag carbon nanotubes having 70 atoms and two...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
The pseudopotential calculations have been performed to study the effect of carbon impurit...
The electronic and structural properties of double-walled boron nitride (BN) nanotubes are studied u...
Tesis (Doctorado en Nanociencias y Materiales)"Carbon nanotubes are versatile materials with promisi...
We determine atomic and electronic structures of arm-chair and zigzag boron nitride nanotubes (BN-NT...
We have investigated, using first-principles calculations, the role of a substitutional carbon atom ...
We have investigated the electronic properties of defected boron nitride nanotubes (BNNTs) for spin-...
Electronic and geometrical aspects of the boron-nitride nanotubes are investigated using the first-p...
Carbon-doped boron nitride nanostructures including nanosheets, nanoribbons, and nanotubes have draw...
Based upon the similarities in properties between carbon- and BN-based (BN=boron nitride) materials,...
2D materials as well as quasi-1D materials exhibit fascinating optical and electronic properties. Bo...
Various molecular electronic properties of boron-nitride nanotube ring doped four different single-w...
By using the first-principles calculations, the electronic structure and quantum transport propertie...
AbstractThe structure of single walled armchair and zig-zag carbon nanotubes having 70 atoms and two...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
The pseudopotential calculations have been performed to study the effect of carbon impurit...
The electronic and structural properties of double-walled boron nitride (BN) nanotubes are studied u...
Tesis (Doctorado en Nanociencias y Materiales)"Carbon nanotubes are versatile materials with promisi...