Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE · 2014 · 10 citations · 4 references
Materials ScienceGraphene NanomeshesElectrical EngineeringBoron NitrideEngineeringHexagonal Boron NitrideNanoelectronicsThermal TransportApplied PhysicsBoron Nitride FillersGrapheneThermal ConductionHeat TransferThermal EngineeringComparative StudyThermal ConductivityThermal PropertyThermal Interface Materials
We report the results of an experimental study that compares the performance of graphene and boron nitride flakes as fillers in the thermal interface materials. The thickness of both fillers varied from a single atomic plane to about a hundred. The measurements have been conducted using a standard TIM tester. Our results show that the addition of a small fraction of graphene (f=4 wt%) to a commercial thermal interface material increases the resulting apparent thermal conductivity substantially stronger than the addition of boron nitride. The obtained data suggest that graphene and fewlayer graphene flakes couple better to the matrix materials than the boron nitride fillers. A combination of both fillers can be used to increase the thermal conductivity while controlling the electrical conduction.
4
Superior Thermal Conductivity of Single-Layer Graphene
Alexander A. Balandin, Suchismita Ghosh, Wenzhong Bao et al. · Nano Letters · 2008 · 13.5K citations
Materials Science, Superior Thermal Conductivity, Graphene Nanomeshes +12