This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by various covalently functionalised graphene. By using molecular dynamics simulations, the obtained results show that the covalent functionalisation in graphene plays a significant role in reducing the graphene-paraffin interfacial thermal resistance. This reduction is dependent on the coverage and type of functional groups. Among the various functional groups, butyl is found to be the most effective in reducing the interfacial thermal resistance, followed by methyl, phenyl and formyl. The other functional groups under consideration such as carboxyl, hydroxyl and amines are found to produce negligible reduction in the interfacial thermal resis...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
Owing to the superior thermal properties of graphene, graphene-reinforced polymer nanocomposites hol...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
A multi-scale approach, including large-scale molecular dynamics simulations, finite element simulat...
Because of their high thermal conductivity, graphene nanoribbons (GNRs) can be employed as fillers t...
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 investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...
This paper is concerned with the interfacial thermal resistance for polymer composites reinforced by...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
Fast growing power densities of modern electronic devices demand high-performance thermal interface ...
Owing to the superior thermal properties of graphene, graphene-reinforced polymer nanocomposites hol...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
Owing to the superior thermal conductivity of graphene, nanocomposites with graphene fillers dispers...
Exploring thermal transport in graphene-polymer nanocomposite is significant to its applications wit...
A multi-scale approach, including large-scale molecular dynamics simulations, finite element simulat...
Because of their high thermal conductivity, graphene nanoribbons (GNRs) can be employed as fillers t...
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 investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Thermal transport in graphene-polymer nanocomposite is complicated and has not been well understood....
This chapter reviews the recent research progress of graphene, with an emphasis on its thermal condu...