The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations through contact with the substrate. Here we show experimentally that the thermal management of a micro heater is substantially improved by introducing alternative heat-escaping channels into a graphene-based film bonded to functionalized graphene oxide through amino-silane molecules. Using a resistance temperature probe for in situ monitoring we demonstrate that the hotspot temperature was lowered by ∼28°C for a chip operating at 1,300 W cm-2. Thermal resistance probed by pulsed photothermal reflectance measurements demonstrated an improved thermal coupling due to functionalization on the graphene-graphene oxide interface. Three functionalization ...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
International audienceThe high thermal conductivity of graphene and few-layer graphene undergoes sev...
It is demonstrated that a graphene-based film (GBF) functionalized with silane molecules strongly en...
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...
We compute thermal conductivity of graphene oxide at room temperature with molecular dynamics simula...
There has been increasing interest in thermal conductivity of materials motivated by the heat remova...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
Surface functionalization of substrates is a promising strategy to tune thermal transport in support...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
As the electronic industry aggressively moves towards nanometer designs thermal issues are becoming ...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
International audienceThe high thermal conductivity of graphene and few-layer graphene undergoes sev...
It is demonstrated that a graphene-based film (GBF) functionalized with silane molecules strongly en...
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...
We compute thermal conductivity of graphene oxide at room temperature with molecular dynamics simula...
There has been increasing interest in thermal conductivity of materials motivated by the heat remova...
This Article is concerned with the interfacial thermal resistance for polymer composites reinforced ...
Surface functionalization of substrates is a promising strategy to tune thermal transport in support...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
As the electronic industry aggressively moves towards nanometer designs thermal issues are becoming ...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
We investigate here heat transfer across interfaces consisting of single- and few-layer graphene she...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...