With the development of thin and high-power electronic devices, heat dissipation has become an important and urgent issue in thermal management. In this study, a water-based epoxy was used as a polymer matrix to prepare heat dissipation coatings utilizing low volatile organic compounds, which were environmentally friendly and had a high heat-dissipating performance. Graphene flakes, multi-walled carbon nanotubes and aluminum oxide particles were used as fillers for preparing the heat dissipation coating. The graphene flakes and multi-walled carbon nanotubes were dispersed in a water-based epoxy by adding sodium dihexyl sulfosuccinate and poly (dimethyldiallylammonium chloride). These two surfactants were combined as a dispersant to improve ...
This paper concerns the thermal properties of graphene-based films for heat spreading applications. ...
Thermal interface materials (TIMs) are a vital component of electronic packaging as they facilitate ...
Phase change materials (PCMs) are increasingly gaining prominence in thermal energy storage due to t...
By optimizing energy usage in buildings, research on smart windows have shown the capability of redu...
Graphene was known as the material that owning many superiority properties and high thermal conducti...
In this paper, a graphene enhanced thermal conductive adhesive (G-TCA) was developed for thermal man...
As transistors continue to decrease in size and packing densities increase, thermal management becom...
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 heat-dissipating coating (GNHC) of 0.6 wt % GN concentration is utilized to promote the coo...
Copyright © 2013 Bui HungThang et al.This is an open access article distributed under theCreativeCom...
This paper reported investigation results of the effect of the difference structures of 1D and 2D na...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Silver Epoxy reinforcement is pivotal to enhance the adhesive strength of Graphene nanoplatelets (GN...
The majority of research into few layer graphene (FLG) thermal interface materials (TIM) concerns th...
This paper concerns the thermal properties of graphene-based films for heat spreading applications. ...
Thermal interface materials (TIMs) are a vital component of electronic packaging as they facilitate ...
Phase change materials (PCMs) are increasingly gaining prominence in thermal energy storage due to t...
By optimizing energy usage in buildings, research on smart windows have shown the capability of redu...
Graphene was known as the material that owning many superiority properties and high thermal conducti...
In this paper, a graphene enhanced thermal conductive adhesive (G-TCA) was developed for thermal man...
As transistors continue to decrease in size and packing densities increase, thermal management becom...
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 heat-dissipating coating (GNHC) of 0.6 wt % GN concentration is utilized to promote the coo...
Copyright © 2013 Bui HungThang et al.This is an open access article distributed under theCreativeCom...
This paper reported investigation results of the effect of the difference structures of 1D and 2D na...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Silver Epoxy reinforcement is pivotal to enhance the adhesive strength of Graphene nanoplatelets (GN...
The majority of research into few layer graphene (FLG) thermal interface materials (TIM) concerns th...
This paper concerns the thermal properties of graphene-based films for heat spreading applications. ...
Thermal interface materials (TIMs) are a vital component of electronic packaging as they facilitate ...
Phase change materials (PCMs) are increasingly gaining prominence in thermal energy storage due to t...