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首页> 外文期刊>ACS applied materials & interfaces >Highly Thermally Conductive Polymer Composite Originated from Assembly of Boron Nitride at an Oil–Water Interface
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Highly Thermally Conductive Polymer Composite Originated from Assembly of Boron Nitride at an Oil–Water Interface

机译:高度导热的聚合物复合材料源自油 - 水界面的氮化硼组装

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摘要

Thermally conductive polymer packaging material is of great significance for the thermal management of electronics. Inorganic thermally conductive fillers have been demonstrated as a convenient approach to achieve this goal by sacrificing the lightweight and processability of the polymer. To address this problem, an effective 3D boron nitride (BN) network was constructed as a heat conduction pathway in a polystyrene (PS) matrix based on an oil–water interface assembly in this work. Styrene oil droplets were stabilized by BN sheets in the water phase to form Pickering emulsions, and then in situ polymerization was trigged to synthesize PS microspheres with ultrathin BN layer-covered surfaces ([email?protected] microspheres). Composite substrates were fabricated through hot-compressing the [email?protected] microspheres to form BN networks based on the original microsphere template. Benefited from the network structure, the maximum thermal conductivity of the composite substrate reached 0.94 W/mK at 33.3 wt % BN, which is 626% folds of that of pure PS. It was also demonstrated that the storage modulus and thermal stability of the composite substrate were dramatically improved by the BN network. The reported composite substrate and its fabrication strategy are promising in the development of thermal management of electronics.
机译:导热聚合物包装材料对于电子产品的热管理具有重要意义。已经证明无机导热填料作为通过牺牲聚合物的轻质和加工性来实现这一目标的方便方法。为了解决该问题,基于该工作中的油水接口组件,将有效的3D氮化硼(BN)网络构成为聚苯乙烯(PS)基质中的导热通路。苯乙烯油液滴通过水相中的BN片稳定,形成旋转乳液,然后突出原位聚合以合成PS微球,用超薄BN层覆盖的表面([email x保护]的微球)。通过热压缩[电子邮件®保护]的微球来制造复合基材,以基于原始微球模板形成BN网络。从网络结构中受益,复合衬底的最大导热率在33.3wt%BN达到0.94W / mK,纯PS的626%折叠。还证明了通过BN网络显着改善了复合基板的储存模量和热稳定性。报告的复合衬底及其制造策略在电子产品的热管理开发中具有很大的意义。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2019年第45期|共9页
  • 作者单位

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

    Department of Structural Engineering Faculty of Engineering Norwegian University of Science and Technology;

    Institute of Applied Technology Hefei Institutes of Physical Science Chinese Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    oil?water interface; boron nitride; thermal conductivity; thermally conductive polymer; polystyrene;

    机译:油?水界面;氮化硼;导热率;导热聚合物;聚苯乙烯;

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