Molecular dynamics simulations showed that a basal carbon nanotube can activate and guide the fabrication of single-walled carbon nanotubes (CNTs) on its internal surface by self-assembly of edge-unpassivated graphene nanoribbons with defects. Furthermore, the distribution of defects on self-assembled CNTs is controllable. The system temperature and defect fraction are two main factors that influence the success of self-assembly. Due to possible joint flaws formed at the boundaries under a relatively high constant temperature, a technique based on increasing the temperature is adopted. Self-assembly is always successful for graphene nanoribbons with relatively small defect fractions, while it will fail in cases with relatively large ones. S...
A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The pre...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
The mass production of fullerenes and nanotubes faces the problem of their selective production. Her...
Molecular dynamics simulations showed that a basal carbon nanotube can activate and guide the fabric...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
In this chapter, a series of molecular dynamics simulations have been carried out to explore the sel...
Carbon nanotubes have long been described as rolled-up graphene sheets. It is only fairly recently o...
We demonstrate a new method (U.S. Patent Appl., serial no. 60/908039) for synthesizing carbon nanotu...
Carbon nanotubes and graphene have many interesting properties. To exploit the properties in applica...
Carbon is a very special element given it can take part in millions of different chemical compounds ...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
Carbon nanotubes are quasi one-dimensional nanostructures with unique eletrical prroperties that mak...
A string of fullerenes is used for generating a nanotube by self-assembly of a black phosphorus (BP)...
A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The pre...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
The mass production of fullerenes and nanotubes faces the problem of their selective production. Her...
Molecular dynamics simulations showed that a basal carbon nanotube can activate and guide the fabric...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
We demonstrate by molecular dynamics simulations that carbon nanotubes can activate and guide on the...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
In this chapter, a series of molecular dynamics simulations have been carried out to explore the sel...
Carbon nanotubes have long been described as rolled-up graphene sheets. It is only fairly recently o...
We demonstrate a new method (U.S. Patent Appl., serial no. 60/908039) for synthesizing carbon nanotu...
Carbon nanotubes and graphene have many interesting properties. To exploit the properties in applica...
Carbon is a very special element given it can take part in millions of different chemical compounds ...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
Carbon nanotubes are quasi one-dimensional nanostructures with unique eletrical prroperties that mak...
A string of fullerenes is used for generating a nanotube by self-assembly of a black phosphorus (BP)...
A nanotube from single-layer black phosphorus (BP) has never been discovered in experiments. The pre...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
The mass production of fullerenes and nanotubes faces the problem of their selective production. Her...