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首页> 外文期刊>Journal of Materials Science >Temperature dependence of single-walled carbon nanotube migration in epoxy resin under DC electric field
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Temperature dependence of single-walled carbon nanotube migration in epoxy resin under DC electric field

机译:直流电场下环氧树脂中单壁碳纳米管迁移的温度依赖性

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摘要

Electric fields have been shown to induce orientation of CNTs in a polymer matrix along the direction of the applied field. When using a DC field, the CNTs also migrate between the two electrodes, resulting in a nonuniform CNT concentration across the composite sample and impacting the strengthening effect gained from the CNT alignment. In this study, we applied a DC electric field to a single-walled carbon nanotube (SWCNT)/epoxy solution and investigated the migration kinetics at different temperatures (34.0-56.6 degrees C) by tracking the real-time changes of SWCNT concentration. The SWCNTs were found to migrate from the negative electrode to the positive electrode at a constant speed. The rate of CNT migration increases with temperature and follows an Arrhenius relationship. The activation energy (83.3-87.7 kJ/mole) was comparable to the activation energy for the viscous flow of the neat epoxy, indicating the viscosity of the polymer melt is the main factor affecting the migration. The migration process and the resulting CNT concentration gradient across the sample are a function of temperature and time enabling control of the spatial distribution of the CNTs and the selective enhancement of electrical, mechanical and thermal properties of CNT/polymer composites.
机译:已经示出了电场沿着所施加的场的方向促进聚合物基质中CNT的取向。当使用DC场时,CNT也在两个电极之间迁移,导致复合样品中的非均匀CNT浓度,并影响从CNT对准中获得的强化效果。在这项研究中,我们将DC电场应用于单壁碳纳米管(SWCNT)/环氧溶液,并通过跟踪SWCNT浓度的实时变化来研究不同温度(34.0-56.6℃)的迁移动力学。发现SWCNTS以恒定速度从负极迁移到正极。 CNT迁移的速率随温度的增加,并遵循Arrhenius的关系。活化能量(83.3-87.7 kJ / mol)与整个环氧树脂粘性流动的活化能量相当,表明聚合物熔体的粘度是影响迁移的主要因素。样品中的迁移过程和所得CNT浓度梯度是温度和时间的函数,使得CNT的空间分布和选择性增强CNT /聚合物复合材料的电气,机械和热性能的选择性。

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  • 来源
    《Journal of Materials Science 》 |2020年第34期| 共14页
  • 作者单位

    Northwestern Polytech Univ Dept Appl Chem Sch Nat &

    Appl Sci Xian 710072 Shaanxi Peoples R China;

    Univ Michigan Dept Mat Sci &

    Engn &

    Mech Engn Ann Arbor MI 48109 USA;

    Univ Michigan Dept Mat Sci &

    Engn &

    Mech Engn Ann Arbor MI 48109 USA;

    Northwestern Polytech Univ Dept Appl Chem Sch Nat &

    Appl Sci Xian 710072 Shaanxi Peoples R China;

    Univ Michigan Dept Mat Sci &

    Engn &

    Mech Engn Ann Arbor MI 48109 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
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