We reported the thermal conductivity of the two-dimensional carbon nanotube (CNT)-based architecture, which can be constructed through welding of single-wall CNTs by electron beam. Using large-scale nonequilibrium molecular dynamics simulations, the thermal conductivity is found to vary with different junction types due to their different phonon scatterings at the junction. The strong length and strain dependence of the thermal conductivity suggests an effective avenue to tune the thermal transport properties of the CNT-based architecture, benefiting the design of nanoscale thermal rectifiers or phonon engineering
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
Carbon nanotubes (CNTs) are being looked at as a promising material for the submicron or nanometre s...
We report electrical transport experiments, using the phenomenon of electrical breakdown to perform ...
We reported the thermal conductivity of the two-dimensional carbon nanotube (CNT)-based architecture...
Thermal energy transfer across physically interacting single-wall carbon nanotube interconnects has ...
Electronic devices and integrated systems are reduced to the size of micron and nanometer level and ...
Carbon nanotubes are superior materials for thermal management and phononic device use due to their ...
Advances in nanomaterials/nanostructures offer the possibility of fabricating multifunctional materi...
Advances in nanomaterials/nanostructures offer the possibility of fabricating multifunctional materi...
Carbon nanotubes (CNTs) have been a focus of research in past decades due to their exceptional elect...
Nanotubes have recently been experimentally demonstrated to be perfect phonon waveguides. To explore...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
The thermal conductances of the carbon nanotube (CNT) junctions that would be found in aCNT aerogel ...
Advisors: Iman Salehinia.Committee members: Nicholas Pohlman; John Shelton.Includes illustrations.In...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
Carbon nanotubes (CNTs) are being looked at as a promising material for the submicron or nanometre s...
We report electrical transport experiments, using the phenomenon of electrical breakdown to perform ...
We reported the thermal conductivity of the two-dimensional carbon nanotube (CNT)-based architecture...
Thermal energy transfer across physically interacting single-wall carbon nanotube interconnects has ...
Electronic devices and integrated systems are reduced to the size of micron and nanometer level and ...
Carbon nanotubes are superior materials for thermal management and phononic device use due to their ...
Advances in nanomaterials/nanostructures offer the possibility of fabricating multifunctional materi...
Advances in nanomaterials/nanostructures offer the possibility of fabricating multifunctional materi...
Carbon nanotubes (CNTs) have been a focus of research in past decades due to their exceptional elect...
Nanotubes have recently been experimentally demonstrated to be perfect phonon waveguides. To explore...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
The thermal conductances of the carbon nanotube (CNT) junctions that would be found in aCNT aerogel ...
Advisors: Iman Salehinia.Committee members: Nicholas Pohlman; John Shelton.Includes illustrations.In...
The thermal conductivity of various carbon nanotubes with defects or intramolecular junctions was st...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
Carbon nanotubes (CNTs) are being looked at as a promising material for the submicron or nanometre s...
We report electrical transport experiments, using the phenomenon of electrical breakdown to perform ...