Optimization of thermal conductivity of nanomaterials enables the fabrication of tailor-made nanodevices for thermoelectric applications. Superlattice nanostructures are correspondingly introduced to minimize the thermal conductivity of nanomaterials. Herein we computationally estimate the effect of total length and superlattice period ( lp ) on the thermal conductivity of graphene/ graphane superlattice nanoribbons using molecular dynamics simulation. The intrinsic thermal conductivity ( ) is demonstrated to be dependent on lp . The of the superlattice, nanoribbons decreased by approximately 96% and 88% compared to that of pristine graphene and graphane, respectively. By modifying the overall length of the developed structure,...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Recent years have witnessed a paradigm shift in the world of electronics. Researchers have not only ...
Optimization of thermal conductivity of nanomaterials enables the fabrication of tailor-made nanode...
Non-equilibrium molecular dynamics is used to investigate the heat current due to the atomic lattice...
Using classical molecular dynamics simulation, we have studied the effect of edge-pa...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe recent progress of the resear...
Recent progress in nanostructuring of materials opens up possibilities to achieve more efficient the...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
Recent progress in nanostructuring of materials opens up possibilities to achieve more efficient the...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
We present a molecular dynamics study providing evidence that it is possible to conceive efficient t...
We present a molecular dynamics study providing evidence that it is possible to conceive efficient t...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Recent years have witnessed a paradigm shift in the world of electronics. Researchers have not only ...
Optimization of thermal conductivity of nanomaterials enables the fabrication of tailor-made nanode...
Non-equilibrium molecular dynamics is used to investigate the heat current due to the atomic lattice...
Using classical molecular dynamics simulation, we have studied the effect of edge-pa...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe recent progress of the resear...
Recent progress in nanostructuring of materials opens up possibilities to achieve more efficient the...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
Recent progress in nanostructuring of materials opens up possibilities to achieve more efficient the...
We report the study of the thermal transport management of monolayer graphene allotrope nanoribbons ...
We present a molecular dynamics study providing evidence that it is possible to conceive efficient t...
We present a molecular dynamics study providing evidence that it is possible to conceive efficient t...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Abstract. We have used classical molecular dynamics based on the Brenner potential to calculate the ...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Recent years have witnessed a paradigm shift in the world of electronics. Researchers have not only ...