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Vertically and compactly rolled-up reduced graphene oxide film/epoxy composites: a two- stage reduction method for graphene-based thermal interfacial materials

机译:垂直且紧凑地卷起的石墨烯氧化物薄膜/环氧复合材料:基于石墨烯的热界面材料的两级减少方法

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摘要

Graphene-based thermal conductive composites have come into notice in recent years. A considerable number of works have been devoted to increasing their thermal conductivity by increasing the graphene loading. However, it is not practical for the fabrication process when the graphene content is too high. In this work, a novel fabrication method of graphene-based composites is proposed, by which a thermal-reduced vertically aligned reduced graphene oxide (TR-VArGO)/epoxy composite was obtained. This method mainly involves a two-step reduction of graphene oxide and a hand-rolling process of reduced graphene oxide film. The thermal conductivity of the TR-VArGO/epoxy composite is up to 2.645 W m~(-1) K~(-1) , i.e. an enhancement of as high as 887% compared to pure epoxy. By contrast, a randomly distributed TR-rGO sheets/epoxy composite with the same rGO loading has a thermal conductivity of only 1.270 W m~(-1) K~(-1) . This difference is attributed to the vertical alignment of TR-VArGO films, which provides a rapid and effective heat-transfer path. This mechanism of high thermal conductivity is further confirmed by theoretical prediction and finite element calculation. The results obtained indicate that the vertically aligned reduced graphene oxide/epoxy composite may become a good candidate for thermal interfacial materials.
机译:近年来石墨烯的导热复合材料已收到通知。通过增加石墨烯负载,已经致力于增加其导热率的相当数量的作品。然而,当石墨烯含量太高时,制造过程是不实际的。在这项工作中,提出了一种新颖的石墨烯复合材料的制造方法,通过该制造基于石墨烯复合材料的制造方法,通过该制造方法,通过该制造基于石墨烯复合材料的垂直对准的氧化石墨烯(TR-VARGO)/环氧复合材料。该方法主要涉及石墨烯氧化物的两步降低和氧化石墨烯氧化膜的轧制过程。 TR-VARGO /环氧复合材料的导热率高达2.645Wm〜(-1)k〜(-1),即与纯环氧树脂相比,高达887%的增强。相反,随机分布的Tr-Rgo片/环氧复合材料具有相同的Rgo负载,其导热率为1.270wm〜(-1)k〜(-1)。这种差异归因于TR-VARGO膜的垂直对准,其提供了一种快速且有效的传热路径。通过理论预测和有限元计算进一步证实了这种高导热率的机制。获得的结果表明,垂直取向的还原的氧化石墨烯/环氧树脂复合材料可以成为热界面材料的良好候选者。

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  • 来源
    《RSC Advances》 |2015年第114期|共10页
  • 作者单位

    Department of Materials Science and Engineering HEDPS/CAPT/LTCS Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Engineering Peking University Beijing 100871 China.;

    Department of Materials Science and Engineering HEDPS/CAPT/LTCS Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Engineering Peking University Beijing 100871 China.;

    Department of Materials Science and Engineering HEDPS/CAPT/LTCS Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Engineering Peking University Beijing 100871 China.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-19 22:35:50
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