首页> 外文期刊>Chemical engineering journal >Low magnetic field-induced alignment of nickel particles in segregated poly (L-lactide)/poly(epsilon-caprolactone)/multi-walled carbon nanotube nanocomposites: Towards remarkable and tunable conductive anisotropy
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Low magnetic field-induced alignment of nickel particles in segregated poly (L-lactide)/poly(epsilon-caprolactone)/multi-walled carbon nanotube nanocomposites: Towards remarkable and tunable conductive anisotropy

机译:低磁场诱导的镍颗粒在隔离聚(L-丙交酯)/聚(ε-己内酯)/多壁碳纳米管纳米复合材料中的镍颗粒对准:朝向显着和可调导电的各向异性

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摘要

Anisotropic conductive composites with segregated conductive networks were constructed in poly(L-lactide)/poly(epsilon-caprolactone)/multi-walled carbon nanotubes/nickel (PLLA/PCL/MWCNT/Ni) composites by aligning Ni particles using a low magnetic field. Firstly, MWCNTs were melt-mixed with PLLA to form PLLA/MWCNT composites and then pulverized into microscale PLLA/MWCNT particles 425-850 mu m in size. Later, the Ni particles were dispersed in PCL to yield PCL/Ni composites and then mixed with PLLA/MWCNT particles at 100 degrees C, a temperature lying in between the melting temperatures of PCL and PLLA. The coated PLLA/MWCNT particles were compressed to form PLLA/PCL/MWCNTs/Ni composites with segregated structures. A remarkable conductive anisotropy was observed in the segregated samples after magnetic alignment in a low magnetic field of similar to 47.5 mT at 100 degrees C for 30 min. The electrical conductivity of the segregated samples diametrically increased in the direction parallel to the magnetic field, but decreased in the direction perpendicular to the magnetic field after the magnetic alignment of Ni particles in the PCL phase. Electrical conductivity in the parallel direction was almost eight orders of magnitude higher than that in the perpendicular direction at 3.0 wt% Ni and 0.7 wt% MWCNTs. Conductive anisotropy in the segregated systems could also be easily regulated by controlling the treatment time or changing the direction of the magnetic field. However, electrical conductivity could be maintained in both vertical and parallel directions in conventional composites after magnetic treatment because Ni particles preferably dispersed in the continuous PLLA phase, in which the Ni particles cannot be aligned at 100 degrees C. In addition, these segregated samples with alignment of Ni particles also exhibited the mechanical enhancement and high-performance electromagnetic interference shielding.
机译:具有分离的导电网络的各向异性导电复合材料通过使用低磁场对准Ni颗粒来构建聚(L-丙交酯)/聚(ε-己内酯)/多壁碳纳米管/镍(PLLA / PCL / MWCNT / Ni)复合材料中构建。首先,将MWCNT与PLLA熔融混合以形成PLLA / MWCNT复合材料,然后粉碎成微量PLLA / MWCNT颗粒425-850μm的尺寸。稍后,将Ni颗粒分散在PCL中以产生PCl / Ni复合材料,然后在100℃下与PLLA / MWCNT颗粒混合,温度在PCL和PLLA的熔化温度之间。将涂覆的PLLA / MWCNT颗粒压缩以形成具有偏析结构的PLLA / PCL / MWCNT / Ni复合材料。在磁对准之后观察到在磁对准的低磁场中在类似于47.5mt的低磁场下在100℃下进行30分钟的偏见进行了显着的导电各向异性。隔离样品的导电率在平行于磁场的方向上径向增加,但在PCL相中的Ni颗粒磁对准之后垂直于磁场的方向上降低。平行方向的电导率几乎高于3.0wt%Ni和0.7wt%MWCNT的垂直方向上的八个数量级。通过控制处理时间或改变磁场的方向,也可以容易地调节隔离系统中的导电各向异性。然而,在磁性处理之后可以在常规复合材料中以常规复合材料在垂直和平行方向上保持导电性,因为Ni颗粒优选分散在连续PLLA相中,其中Ni颗粒不能在100℃下对准。另外,这些隔离样品Ni颗粒的对准也表现出机械增强和高性能电磁干扰屏蔽。

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  • 来源
    《Chemical engineering journal》 |2018年第2018期|共11页
  • 作者单位

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Southwest Univ Sch Chem &

    Chem Engn Key Lab Appl Chem Chongqing Municipal Chongqing 400715 Peoples R China;

    Sichuan Univ Polymer Res Inst State Key Lab Polymer Mat Engn Chengdu 610065 Sichuan Peoples R China;

    Sichuan Univ Polymer Res Inst State Key Lab Polymer Mat Engn Chengdu 610065 Sichuan Peoples R China;

  • 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

    Conductive anisotropy; Segregated structure; Magnetic alignment; Poly(L-lactide); Poly(epsilon-caprolactone);

    机译:导电各向异性;隔离结构;磁对准;聚(L-丙交酯);聚(ε-己内酯);

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