International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane molecules strongly enhances thermal performance. The resistance temperature detector results show that the inclusion of silane molecules doubles the heat spreading ability. Furthermore, molecular dynamics simulations show that the thermal conductivity (κ) of the GBF increased by 15%–56% with respect to the number density of molecules compared to that with the nonfunctionalized graphene substrate. This increase in κ is attributed to the enhanced in-plane heat conduction of the GBF, resulting from the simultaneous increase of the thermal resistance between the GBF and the functionalized substrate limiting cross-plane phonon scattering. Enhance...
Though graphene paper consisting of layer-by-layer stacked graphene nanosheets (GNs) has been widely...
Due to substantial phonon scattering induced by various structural defects, the in-plane thermal con...
Efficient thermal management is becoming a critical issue for development of the next generation of ...
International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Graphene shows great potential for applications in electronics due to its outstanding physical prope...
Graphene-based heat spreading materials, including graphene-based film (GBF) and graphene-based elec...
This paper concerns the thermal properties of graphene-based films for heat spreading applications. ...
Graphene-based films (GBF) were fabricated using a chemical conversion process including graphene ox...
The effect of Joule heating on graphene electronic properties is investigated by self-consistent use...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Graphene was known as the material that owning many superiority properties and high thermal conducti...
Though graphene paper consisting of layer-by-layer stacked graphene nanosheets (GNs) has been widely...
Due to substantial phonon scattering induced by various structural defects, the in-plane thermal con...
Efficient thermal management is becoming a critical issue for development of the next generation of ...
International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Graphene shows great potential for applications in electronics due to its outstanding physical prope...
Graphene-based heat spreading materials, including graphene-based film (GBF) and graphene-based elec...
This paper concerns the thermal properties of graphene-based films for heat spreading applications. ...
Graphene-based films (GBF) were fabricated using a chemical conversion process including graphene ox...
The effect of Joule heating on graphene electronic properties is investigated by self-consistent use...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Graphene was known as the material that owning many superiority properties and high thermal conducti...
Though graphene paper consisting of layer-by-layer stacked graphene nanosheets (GNs) has been widely...
Due to substantial phonon scattering induced by various structural defects, the in-plane thermal con...
Efficient thermal management is becoming a critical issue for development of the next generation of ...