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Thermal Conductivity of Graphene-Polymer Composites: Mechanisms, Properties, and Applications

Polymers · 2017 · Vol. 9(9) · pp. 437–437
An LiCong ZhangYangfei Zhang

Abstract

With the integration and miniaturization of electronic devices, thermal management has become a crucial issue that strongly affects their performance, reliability, and lifetime. One of the current interests in polymer-based composites is thermal conductive composites that dissipate the thermal energy produced by electronic, optoelectronic, and photonic devices and systems. Ultrahigh thermal conductivity makes graphene the most promising filler for thermal conductive composites. This article reviews the mechanisms of thermal conduction, the recent advances, and the influencing factors on graphene-polymer composites (GPC). In the end, we also discuss the applications of GPC in thermal engineering. This article summarizes the research on graphene-polymer thermal conductive composites in recent years and provides guidance on the preparation of composites with high thermal conductivity.

Thermal properties of materialsGraphene research and applicationsThermal Radiation and Cooling TechnologiesMaterials scienceThermal conductivityGrapheneComposite materialElectrical conductorMiniaturizationThermal conductionThermalPolymerFiller (materials)

Funding

  • National Natural Science Foundation of China
Citations
398
FWCI
14.27
field-weighted impact
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119
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