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首页> 外文期刊>Journal of nanoscience and nanotechnology >Carbon Nanotube/Cu Nanowires/Epoxy Composite Mats with Improved Thermal and Electrical Conductivity
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Carbon Nanotube/Cu Nanowires/Epoxy Composite Mats with Improved Thermal and Electrical Conductivity

机译:具有改善的导热性和导电性的碳纳米管/铜纳米线/环氧树脂复合垫

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Polymer composites with carbon nanofillers have been regarded as a promising candidate for electronic package materials. The challenge for such materials is to increase the electrical and thermal conductivity of the composites. Herein, we reported an epoxy composite film with high thermal and electrical conductivity that were prepared by loading high volume fraction. of well-dispersed multiwalled carbon nanotubes (MWCNTs, around 50 nm in diameter, 1-10 mu m in length) and copper nanowires (Cu NWs, 60-70 nm in diameter, 1-5 mu m in length) in epoxy matrix. The MWCNT-Cu NW hybrid mats were prepared by a vacuum filtration method with an optimum Cu NW content of 50 wt%. The hybrid mats was then impregnated by epoxy solution to prepare epoxy composite films. The epoxy was modified by the toughening agent to make the composite films tough and flexible. The loading fraction of MWCNTs and Cu NWs was tuned by controlling the viscosity of epoxy solution. A remarkable synergetic effect between the MWCNTs and Cu NWs in improving the electrical and thermal conductivity of epoxy composites was demonstrated. The results showed that the electrical conductivity of nanocomposites with 42.5 wt% epoxy was 1500 S/m, and the thermal conductivity was 2.83 W/m K, which was 10.1 times of the neat epoxy. Its thermal resistance was as low as 1% of the pure epoxy. And the mechanical properties of composites were also investigated. These robust and flexible nanocomposites showed prospective applications as thermal interface materials (TIMs) in the electronic industry.
机译:具有碳纳米填料的聚合物复合材料被认为是电子封装材料的有希望的候选者。这种材料的挑战是增加复合材料的电导率和导热率。在本文中,我们报道了通过负载高体积分数制备的具有高导热性和导电性的环氧复合膜。分散在环氧基质中的分散良好的多壁碳纳米管(MWCNT,直径约50 nm,长度1-10微米)和铜纳米线(Cu NWs,直径60-70 nm,长度1-5微米)。通过真空过滤法制备MWCNT-Cu NW杂化垫,最佳Cu NW含量为50wt%。然后将混合垫用环氧树脂溶液浸渍以制备环氧复合膜。用增韧剂对环氧树脂进行改性,以使复合膜坚韧而柔韧。通过控制环氧溶液的粘度,可以调节多壁碳纳米管和铜纳米线的负载率。 MWCNTs和Cu NWs在改善环氧复合材料的电导率和导热率方面具有显着的协同作用。结果表明,环氧含量为42.5 wt%的纳米复合材料的电导率为1500 S / m,导热率为2.83 W / m K,是纯环氧树脂的10.1倍。其热阻低至纯环氧树脂的1%。并对复合材料的力学性能进行了研究。这些坚固而灵活的纳米复合材料在电子工业中显示出作为热界面材料(TIM)的潜在应用。

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