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Ultrathin Flexible Graphene Film: An Excellent Thermal Conducting Material with Efficient EMI Shielding

Advanced Functional Materials · 2014 · Vol. 24(28) · pp. 4542–4548
Bin ShenWentao ZhaiWenge Zheng

Abstract

As the portable device hardware has been increasing at a noticeable rate, ultrathin thermal conducting materials (TCMs) with the combination of high thermal conductivity and excellent electromagnetic interface (EMI) shielding performance, which are used to efficiently dissipate heat and minimize EMI problems generated from electronic components (such as high speed processors), are urgently needed. In this work, graphene oxide (GO) films are fabricated by direct evaporation of GO suspension under mild heating, and ultrathin graphite‐like graphene films are produced by graphitizing GO films. Further investigation demonstrates that the resulting graphene film with only ≈8.4 μm in thickness not only possesses excellent EMI shielding effectiveness of ≈20 dB and high in‐plane thermal conductivity of ≈1100 W m ‐1 K ‐1 , but also shows excellent mechanical flexibility and structure integrity during bending, indicating that the graphitization of GO film could be considered as a new alternative way to produce excellent TCMs with efficient EMI shielding.

Graphene research and applicationsElectromagnetic wave absorption materialsThermal properties of materialsMaterials scienceGrapheneEMIElectromagnetic shieldingElectromagnetic interferenceGraphiteComposite materialThermal conductivityOptoelectronicsOxide

Funding

  • National Natural Science Foundation of China
  • Natural Science Foundation of Ningbo
Citations
910
FWCI
20.29
field-weighted impact
References
49
Percentile
100%
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