International audienceA simple model for the nucleation and growth of single wall carbon nanotubes from a graphene sheet at the surface of a metallic catalyst saturated in carbon is developed. It enables to predict the geometry and energy of tube embryos of all possible chiralities, as well as the way that they can grow. It is shown that armchair-like chiralities are energy preferred for geometrical reasons. This result is discussed and compared to experimental literature. © 2012 Elsevier Ltd. All rights reserved
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
The underlying mechanisms for the nucleation of carbon nanotubes as well as their helicity, remain e...
International audienceSingle-walled carbon nanotubes are hollow cylinders, that can grow centimeters...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
The underlying mechanisms for the nucleation of carbon nanotubes as well as their helicity, remain e...
International audienceSingle-walled carbon nanotubes are hollow cylinders, that can grow centimeters...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
International audienceA simple model for the nucleation and growth of single wall carbon nanotubes f...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
Solid state communications, in pressThe nucleation and growth of single wall carbon nanotubes from a...
The underlying mechanisms for the nucleation of carbon nanotubes as well as their helicity, remain e...
International audienceSingle-walled carbon nanotubes are hollow cylinders, that can grow centimeters...