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Accurate determination of anisotropic thermal conductivity for ultrathin composite film

     

摘要

Highly anisotropic thermal conductive materials are of significance in thermal management applications. However,accurate determination of ultrathin composite thermal properties is a daunting task due to the tiny thermal conductance,severely hindering the further exploration of novel efficient thermal management materials, especially for size-confined environments. In this work, by utilizing a hybrid measuring method, we demonstrate an accurate determination of thermal properties for montmorillonite/reduced graphene oxide(MMT/r GO) composite film with a thickness range from 0.2 μm to2 μm. The in-plane thermal conductivity measurement is realized by one-dimensional(1D) steady-state heat conduction approach while the cross-plane one is achieved via a modified 3ω method. As-measured thermal conductivity results are cross-checked with different methods and known materials, revealing the high measurement accuracy. A high anisotropic ratio of 60.5, independent of composite thickness, is observed in our measurements, further ensuring the negligible measurement error. Notably, our work develops an effective approach to the determination of ultrathin composite thermal conductivity, which may promote the development of ultrathin composites for potential thermal-related applications.

著录项

  • 来源
    《中国物理:英文版》 |2022年第10期|572-577|共6页
  • 作者单位

    Beijing National Center for Condensed Matter Physics;

    Beijing Key Laboratory for Nanomaterials and Nanodevices;

    Institute of Physics;

    Chinese Academy of Sciences(CAS);

    Beijing 100190;

    China;

    CAS Center of Excellence in Topological Quantum Computation and School of Physical Sciences;

    University of Chinese Academy of Sciences;

    Beijing 100190;

    China;

    School of Chemistry;

    Key Laboratory of Bio-inspired Smart Interfacial Science and Technology of Ministry of Education;

    Beijing Advanced Innovation Center for Biomedical Engineering;

    Beihang University;

    Beijing 100191;

    China;

    Songshan Lake Materials Laboratory;

    Dongguan 523808;

    China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TB383.2;
  • 关键词

    ultrathin; composite film; thermal conductivity; anisotropic ratio;

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