We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on their surfaces the fabrication of single-walled carbon nanotubes by self-assembly of edge-unpassivated twisted graphene nanoribbons. Temperature is a governing factor, which mainly controls the self-assembly process. Three types of stable configurations exist due to the self-assembly of twisted graphene nanoribbons at constant temperatures, i.e., a helical structure, a self-assembled carbon nanotube, and a nearly straight graphene strip, on a basal carbon nanotube. Raising the temperature gradually, the helical structure can spontaneously switch to a single-walled carbon nanotube or a nearly straight graphene strip. The straight graphene strip c...
Chirality is a fascinating property present in naturally occurring and artificial molecules and mate...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
By placing a graphene nanoribbon (GNR) near a carbon nanotube (CNT) it is possible to obtain a carbo...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
Carbon nanotubes have long been described as rolled-up graphene sheets. It is only fairly recently o...
Molecular dynamics simulations showed that a basal carbon nanotube can activate and guide the fabric...
Twisted van der Waals heterostructures were recently found to possess unique physical properties, su...
In this chapter, a series of molecular dynamics simulations have been carried out to explore the sel...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The pre...
We demonstrate a new method (U.S. Patent Appl., serial no. 60/908039) for synthesizing carbon nanotu...
International audienceSingle-walled carbon nanotubes are hollow cylinders, that can grow centimeters...
An optimum chirality of carbon nanotube (CNT) is modeled and analyzed in this paper. CNT is a tubula...
The mass production of fullerenes and nanotubes faces the problem of their selective production. Her...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
Chirality is a fascinating property present in naturally occurring and artificial molecules and mate...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
By placing a graphene nanoribbon (GNR) near a carbon nanotube (CNT) it is possible to obtain a carbo...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
Carbon nanotubes have long been described as rolled-up graphene sheets. It is only fairly recently o...
Molecular dynamics simulations showed that a basal carbon nanotube can activate and guide the fabric...
Twisted van der Waals heterostructures were recently found to possess unique physical properties, su...
In this chapter, a series of molecular dynamics simulations have been carried out to explore the sel...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The pre...
We demonstrate a new method (U.S. Patent Appl., serial no. 60/908039) for synthesizing carbon nanotu...
International audienceSingle-walled carbon nanotubes are hollow cylinders, that can grow centimeters...
An optimum chirality of carbon nanotube (CNT) is modeled and analyzed in this paper. CNT is a tubula...
The mass production of fullerenes and nanotubes faces the problem of their selective production. Her...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
Chirality is a fascinating property present in naturally occurring and artificial molecules and mate...
We produce precise chiral-edge graphene nanoribbons on Cu{111} using self-assembly and surface-direc...
By placing a graphene nanoribbon (GNR) near a carbon nanotube (CNT) it is possible to obtain a carbo...