The influence of point defect on the electronic and spatial structure of carbon nanotubes (8.0) have been studied depending on the placement vacancies in the structure of nanotubes. On the basis of quantum-chemical calculations and using semi-empirical and ab initio approaches the maps of the distribution of molecular electrostatic potential were builds in the planes which are perpendicular to the main axis of the nanotubes. It is shown that defects such as vacancy, are placed outside the first hexagonal carbon belt no effect on the topology of the distribution of molecular electrostatic potential in the vicinity of the entrance to the carbon nanotube. Instead, reactivity of port’s atoms such nanotubes may determinated point defects of the...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
We present quantum mechanical calculations using density functional theory and semiempirical methods...
We present density of states and electronic transport calculations of single vacancies in carbon nan...
Carbon nanotubes are quasi one-dimensional nanostructures with unique eletrical prroperties that mak...
A metallic carbon nanotube with point-like defects under influence of a local potential due to a poi...
The electronic structure of carbon nanotubes containing defects is investigated within a tight-bindi...
The relationship between the bandgap and the vacancy density is investigated from first principles. ...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
[[abstract]]Characterization of the interaction between vacancy defects in zigzag single-walled carb...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
[[abstract]]The relationship between the bandgap and the vacancy density is investigated from first ...
[[abstract]]Characterization of the interaction between vacancy defects in zigzag single-walled carb...
[[abstract]]The relationship between the bandgap and the vacancy density is investigated from first ...
Point defects, including atom vacancies, adatom, and Stone-Wale defects, close to a (5,5) single-wal...
[[abstract]]The relationship between the electric properties and the vacancy density in single-walle...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
We present quantum mechanical calculations using density functional theory and semiempirical methods...
We present density of states and electronic transport calculations of single vacancies in carbon nan...
Carbon nanotubes are quasi one-dimensional nanostructures with unique eletrical prroperties that mak...
A metallic carbon nanotube with point-like defects under influence of a local potential due to a poi...
The electronic structure of carbon nanotubes containing defects is investigated within a tight-bindi...
The relationship between the bandgap and the vacancy density is investigated from first principles. ...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
[[abstract]]Characterization of the interaction between vacancy defects in zigzag single-walled carb...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
[[abstract]]The relationship between the bandgap and the vacancy density is investigated from first ...
[[abstract]]Characterization of the interaction between vacancy defects in zigzag single-walled carb...
[[abstract]]The relationship between the bandgap and the vacancy density is investigated from first ...
Point defects, including atom vacancies, adatom, and Stone-Wale defects, close to a (5,5) single-wal...
[[abstract]]The relationship between the electric properties and the vacancy density in single-walle...
This article presents a systematic study of how point defects, such as SW-defects and vacancies, inf...
We present quantum mechanical calculations using density functional theory and semiempirical methods...
We present density of states and electronic transport calculations of single vacancies in carbon nan...