We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene nanoribbons, partially unzipped carbon nanotubes, which can be seen as carbon-nanotube-graphene-nanoribbon junctions, and carbon nanotubes by using molecular dynamics simulations. It is found that the thermal conductivity of a graphene nanoribbon is much less than that of its perfect carbon nanotube counterparts because of the localized phonon modes at the boundary. A partially unzipped carbon nanotube has the lowest thermal conductivity due to additional localized modes at the junction region. More strikingly, a significant thermal rectification effect is observed in both partially unzipped armchair and zigzag carbon nanotubes. Our results sug...
By using molecular dynamics simulations, we have studied heat flux in graphene Y junctions with leng...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Abstract: Thermal conductivity is one of the most interesting physical properties of carbon nanotube...
The purpose of this research is an investigation of the thermal conductivity () and thermal rectific...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Carbon nanotubes and graphene are promising for thermal management applications due to their high th...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
In the present study, reverse nonequilibrium molecular dynamics is employed to study thermal resista...
Classical molecular dynamics based on the Brenner potential and Nos,-Hoover thermostat has been used...
Phonons are primary heat carriers in carbon nanotubes (CNTs) and graphene; a fundamental understandi...
By using molecular dynamics simulation, we explore the isotope effect on thermal conductivity of gra...
We use molecular dynamics simulations to explore the lattice thermal transport in free-standing and ...
The study of thermal properties of large networks of carbon nanoparticles may have an important imp...
By using molecular dynamics simulations, we have studied heat flux in graphene Y junctions with leng...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Abstract: Thermal conductivity is one of the most interesting physical properties of carbon nanotube...
The purpose of this research is an investigation of the thermal conductivity () and thermal rectific...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Carbon nanotubes and graphene are promising for thermal management applications due to their high th...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
In the present study, reverse nonequilibrium molecular dynamics is employed to study thermal resista...
Classical molecular dynamics based on the Brenner potential and Nos,-Hoover thermostat has been used...
Phonons are primary heat carriers in carbon nanotubes (CNTs) and graphene; a fundamental understandi...
By using molecular dynamics simulation, we explore the isotope effect on thermal conductivity of gra...
We use molecular dynamics simulations to explore the lattice thermal transport in free-standing and ...
The study of thermal properties of large networks of carbon nanoparticles may have an important imp...
By using molecular dynamics simulations, we have studied heat flux in graphene Y junctions with leng...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Abstract: Thermal conductivity is one of the most interesting physical properties of carbon nanotube...