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Carbon hybrid fillers composed of carbon nanotubes directly grown on graphene nanoplatelets for effective thermal conductivity in epoxy composites

机译:碳杂化填料由直接生长在石墨烯纳米片上的碳纳米管组成,可有效提高环氧复合材料的导热性

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摘要

Carbon nanomaterials are generally used to promote the thermal conductivity of polymer composites. However, individual graphene nanoplatelets (GNPs) or carbon nanotubes (CNTs) limit the realization of the desirable thermal conductivity of the composite in both through- and in-plane directions. In this work, we present the thermal conductivity enhancement of the epoxy composite with carbon hybrid fillers composed of CNTs directly grown on the GNP support. The composite with 20 wt% hybrid filler loading showed 300% and 50% through-plane thermal conductivity improvements in comparison with the individual CNTs and GNPs, respectively. Moreover, it showed an enhanced thermal conductivity of up to 12% higher than that of the simply mixed GNP and CNT fillers. In more detail, hybrid fillers, whose CNTs were synthesized on the GNP support (Support C, Fe/Mo-MgO:GNP=1:0.456) for 60 min via chemical vapor deposition process, presented the highest through-plane thermal conductivity of 2.41 W m~(-1) K~(-1) in an epoxy composite.
机译:碳纳米材料通常用于提高聚合物复合材料的导热性。但是,单独的石墨烯纳米片(GNP)或碳纳米管(CNT)限制了复合材料在平面方向和平面方向上实现所需的导热性。在这项工作中,我们介绍了由碳杂化填料(由直接在GNP载体上生长的CNT组成)的环氧复合材料的导热性增强。与单独的CNT和GNP相比,杂化填料负载量为20 wt%的复合材料显示出300%和50%的贯穿平面热导率提高。此外,与简单混合的GNP和CNT填料相比,它的导热率提高了12%。更详细地讲,杂化填料的碳纳米管是通过化学气相沉积工艺在GNP载体(载体C,Fe / Mo-MgO:GNP = 1:0.456)上合成60分钟的,具有最高的贯穿面热导率2.41环氧复合材料中的W m〜(-1)K〜(-1)。

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