Because of their high thermal conductivity, graphene nanoribbons (GNRs) can be employed as fillers to enhance the thermal transfer properties of composite materials, such as polymer-based ones. However, when the filler loading is higher than the geometric percolation threshold, the interfacial thermal resistance between adjacent GNRs may significantly limit the overall thermal transfer through a network of fillers. In this article, reverse non-equilibrium molecular dynamics is used to investigate the impact of the relative orientation (i.e., horizontal and vertical overlap, interplanar spacing and angular displacement) of couples of GNRs on their interfacial thermal resistance. Based on the simulation results, we propose an empirical correl...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
This paper presents an atomistic Green\u27s function study of phonon transport through a heterogeneo...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Thermal conductivity of polymer-based (nano)composites is typically limited by thermal resistances o...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
In this work, we investigated the effect of knots in the thermal transport of graphene nanoribbons t...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
The proper design and synthesis of molecular junctions for the purpose of establishing percolative n...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
This paper presents an atomistic Green\u27s function study of phonon transport through a heterogeneo...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Thermal conductivity of polymer-based (nano)composites is typically limited by thermal resistances o...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
In this work, we investigated the effect of knots in the thermal transport of graphene nanoribbons t...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
The proper design and synthesis of molecular junctions for the purpose of establishing percolative n...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...
This paper presents an atomistic Green\u27s function study of phonon transport through a heterogeneo...
We have used molecular dynamics to calculate the thermal conductivity of symmetric and asymmetric gr...