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- W2110372288 abstract "We review the thermal properties of graphene and multilayer graphene, and discuss graphene’s applications in thermal management of advanced electronics and optoelectronics. A special attention is paid to the use of the liquid-phase-exfoliated graphene and multilayer graphene as the fillers in the thermal interface materials. It has been demonstrated that addition of an optimized mixture of graphene and multilayer graphene to the composites with different matrix materials produces the record-high enhancement of the effective thermal conductivity at the small filler loading fraction (f≤10 vol%). The thermal conductivity enhancement due to the presence of graphene in the composites has been observed for a range of matrix materials used by industry. The hybrid composites where graphene is utilized together with metallic micro- and nanoparticles allow one to tune both the thermal and electrical conductivity of these materials. Theoretical considerations indicate that the graphene-based thermal interface materials can outperform those with carbon nanotubes, metal nanoparticles and other fillers owing to graphene’s geometry, mechanical flexibility and lower Kapitza resistance at the graphene–base material interface." @default.
- W2110372288 created "2016-06-24" @default.
- W2110372288 creator A5075533015 @default.
- W2110372288 creator A5085369945 @default.
- W2110372288 date "2012-08-01" @default.
- W2110372288 modified "2023-10-11" @default.
- W2110372288 title "Thermal properties of graphene and multilayer graphene: Applications in thermal interface materials" @default.
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- W2110372288 doi "https://doi.org/10.1016/j.ssc.2012.04.034" @default.
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