Thermal management in microelectronic devices has become a crucial issue as the devices are more and more integrated into micro-devices. Recently, free-standing graphene films (GFs) with outstanding thermal conductivity, superb mechanical strength, and low bulk density, have been regarded as promising materials for heat dissipation and for use as thermal interfacial materials in microelectronic devices. Recent studies on free-standing GFs obtained via various approaches are reviewed here. Special attention is paid to their synthesis method, thermal conductivity, and potential applications. In addition, the most important factors that affect the thermal conductivity are outlined and discussed. The scope is to provide a clear overview that re...
We review the results of our experimental and theoretical study of thermal conductivity of graphene....
Graphene-based films (GBF) were fabricated using a chemical conversion process including graphene ox...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Graphene shows great potential for applications in electronics due to its outstanding physical prope...
Almost 15 years have gone ever since the discovery of graphene as a single atom layer. Numerous pape...
As a two-dimensional(2D) building block of new materials, graphene has received widespread attention...
As transistors continue to decrease in size and packing densities increase, thermal management becom...
Efficient thermal management is becoming a critical issue for development of the next generation of ...
With the increasing power density of electrical and electronic devices, there has been an urgent dem...
It is demonstrated that a graphene-based film (GBF) functionalized with silane molecules strongly en...
Graphene-based heat spreading materials, including graphene-based film (GBF) and graphene-based elec...
In this paper, a graphene enhanced thermal conductive adhesive (G-TCA) was developed for thermal man...
We review the results of our experimental and theoretical study of thermal conductivity of graphene....
Graphene-based films (GBF) were fabricated using a chemical conversion process including graphene ox...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Graphene shows great potential for applications in electronics due to its outstanding physical prope...
Almost 15 years have gone ever since the discovery of graphene as a single atom layer. Numerous pape...
As a two-dimensional(2D) building block of new materials, graphene has received widespread attention...
As transistors continue to decrease in size and packing densities increase, thermal management becom...
Efficient thermal management is becoming a critical issue for development of the next generation of ...
With the increasing power density of electrical and electronic devices, there has been an urgent dem...
It is demonstrated that a graphene-based film (GBF) functionalized with silane molecules strongly en...
Graphene-based heat spreading materials, including graphene-based film (GBF) and graphene-based elec...
In this paper, a graphene enhanced thermal conductive adhesive (G-TCA) was developed for thermal man...
We review the results of our experimental and theoretical study of thermal conductivity of graphene....
Graphene-based films (GBF) were fabricated using a chemical conversion process including graphene ox...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...