Carbon nanotubes rank amongst potential candidates for a new family of nanoscopic devices, in particular for sensing applications. At the same time that defects in carbon nanotubes act as binding sites for foreign species, our current level of control over the fabrication process does not allow one to specifically choose where these binding sites will actually be positioned. In this work we present a theoretical framework for accurately calculating the electronic and transport properties of long disordered carbon nanotubes containing a large number of binding sites randomly distributed along a sample. This method combines the accuracy and functionality of ab initio density functional theory to determine the electronic structure with a recur...
Abstract — We determined the Landauer ballistic conductance of pristine nanotubes at finite temperat...
Existing theoretical literature suggests that defect-free, pristine carbon nanotubes (CNTs) interact...
Carbon nanotubes have been at the forefront of nanotechnology, leading not only to a better understa...
Carbon nanotubes rank amongst potential candidates for a new family of nanoscopic devices, in partic...
The use of nanoscale low-dimensional systems could boost the sensitivity of gas sensors. In this wor...
Using a combination of density functional theory and recursive Green's functions techniques, we pres...
Carbon nanotubes (CNTs) are a prominent example for new materials in microelectronics, overcoming th...
Investigating the influence of disorder on electron transport is difficult for very large systems. T...
We study the transport properties of defective single-walled armchair carbon nanotubes (CNTs) on a m...
We investigate the electronic transport properties of semiconducting (m, n) carbon nanotubes (CNTs) ...
The chemical sensitivity of electronic transport in carbon nanotubes under the physisorption of mole...
4 páginas, 5 figuras.-- et al.As is common knowledge, armchair graphene nanoribbons (aGNRs) share ma...
International audienceAs is common knowledge, armchair graphene nanoribbons (aGNRs) share many elect...
Nitrogen-doped carbon nanotubes can provide reactive sites on the porphyrin-like defects. It is well...
We theoretically investigate the influence of defect-induced long-range deformations in carbon nanot...
Abstract — We determined the Landauer ballistic conductance of pristine nanotubes at finite temperat...
Existing theoretical literature suggests that defect-free, pristine carbon nanotubes (CNTs) interact...
Carbon nanotubes have been at the forefront of nanotechnology, leading not only to a better understa...
Carbon nanotubes rank amongst potential candidates for a new family of nanoscopic devices, in partic...
The use of nanoscale low-dimensional systems could boost the sensitivity of gas sensors. In this wor...
Using a combination of density functional theory and recursive Green's functions techniques, we pres...
Carbon nanotubes (CNTs) are a prominent example for new materials in microelectronics, overcoming th...
Investigating the influence of disorder on electron transport is difficult for very large systems. T...
We study the transport properties of defective single-walled armchair carbon nanotubes (CNTs) on a m...
We investigate the electronic transport properties of semiconducting (m, n) carbon nanotubes (CNTs) ...
The chemical sensitivity of electronic transport in carbon nanotubes under the physisorption of mole...
4 páginas, 5 figuras.-- et al.As is common knowledge, armchair graphene nanoribbons (aGNRs) share ma...
International audienceAs is common knowledge, armchair graphene nanoribbons (aGNRs) share many elect...
Nitrogen-doped carbon nanotubes can provide reactive sites on the porphyrin-like defects. It is well...
We theoretically investigate the influence of defect-induced long-range deformations in carbon nanot...
Abstract — We determined the Landauer ballistic conductance of pristine nanotubes at finite temperat...
Existing theoretical literature suggests that defect-free, pristine carbon nanotubes (CNTs) interact...
Carbon nanotubes have been at the forefront of nanotechnology, leading not only to a better understa...