Thermal conductivity of polymer-based (nano)composites is typically limited by thermal resistances occurring at the interfaces between the polymer matrix and the conductive particles as well as between particles themselves. In this work, the adoption of molecular junctions between thermally conductive graphene foils is addressed, aiming at the reduction of the thermal boundary resistance and eventually lead to an efficient percolation network within the polymer nanocomposite. This system was computationally investigated at the atomistic scale, using classical Molecular Dynamics, applied the first time to the investigation of heat transfer trough molecular junctions within a realistic environment for a polymer nanocomposite. A series of Mole...
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Thermal conductivity of polymer-based (nano)composites is typically limited by thermal resistances o...
Graphene-polymer nanocomposites have attracted considerable attention due to their unique properties...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
The proper design and synthesis of molecular junctions for the purpose of establishing percolative n...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Owing to the superior thermal properties of graphene, graphene-reinforced polymer nanocomposites hol...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Thermal conductivity of polymer-based (nano)composites is typically limited by thermal resistances o...
Graphene-polymer nanocomposites have attracted considerable attention due to their unique properties...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
The proper design and synthesis of molecular junctions for the purpose of establishing percolative n...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Owing to the superior thermal properties of graphene, graphene-reinforced polymer nanocomposites hol...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
Graphene nanoribbons (GNRs) can be added as fillers in polymer matrix composites for enhancing their...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....