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Anisotropic thermal conductive properties of cigarette filter-templated graphene/epoxy composites
Authors:Zhiduo Liu  Yapeng Chen  Wen Dai  Yuming Wu  Mengjie Wang  Xiao Hou  He Li  Nan Jiang  Cheng-Te Lin  Jinhong Yu
Institution:Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences, Ningbo 315201 China.; University of Chinese Academy of Sciences, 19 A Yuquan Rd., Shijingshan District, Beijing 100049 China
Abstract:Herein, a cigarette filter-templated graphene/epoxy composite was prepared with enhanced thermal conductive properties. The through-plane thermal conductivity of the epoxy composite was up to 1.2 W mK−1, which was 4 times that of it in the in-plane (0.298 W mK−1) after only 5 filtration cycles. The thermal conductive anisotropy and improvement in the through-plane thermal conductivity of the epoxy composite were attributed to the particular structure of cigarette filter-templated graphene in the epoxy matrix. The unique structure formed effective conductive pathways in the composite to improve the thermal transportation properties. The excellent thermal transportation properties allow the epoxy composite to be used as an efficient heat dissipation material for thermal management applications.

We report a facile method to prepare cigarette filter-templated graphene/epoxy composites with excellent thermal transport performance.
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