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Multifunctional polymer nanocomposites with uniaxially aligned liquid crystal polymer fibrils and graphene nanoplatelets

机译:具有单轴排列的液晶聚合物原纤维和石墨烯纳米片的多功能聚合物纳米复合材料

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Polymer nanocomposites have actively been studied to replace metals in different emerging applications because of their light weight, superior manufacturability, and low processing cost. For example, extensive research efforts have been made to develop advanced thermally conductive polymer nanocomposites, with good processability, for heat management applications. In this study, liquid crystal polymer (LCP)-based nanocomposites have shown to possess much higher effective thermal conductivity (keff) (i.e., as high as 2.58 W/m K) than neat polymers (i.e., ∼0.2–0.4 W/m K). The fibrillation of LCP in LCP-graphene nanoplatelet (GNP) nanocomposites also demonstrated more pronounced increase in keff than that of polyphenylene sulfide (PPS)-GNP nanocomposites. Furthermore, ultra-drawing of LCP-GNP nanocomposite led to additional increase in the nanocomposite's keff because of the alignments of LCP fibrils and the embedded GNP. Experimental results also revealed that, unlike keff, the electrical conductivity (σ) of nanocomposites was unaffected by the types of polymer matrix. This exhibited that the keff and σ were promoted by different mechanisms, suggesting a potential route to tailor polymer nanocomposite's keff and σ independently.
机译:聚合物纳米复合材料因其重量轻,可制造性强和加工成本低而在各种新兴应用中已被积极研究替代金属。例如,已经进行了广泛的研究努力以开发用于热管理应用的具有良好可加工性的高级导热聚合物纳米复合材料。在这项研究中,基于液晶聚合物(LCP)的纳米复合材料具有比纯聚合物(即〜0.2–0.4 W / m)高得多的有效热导率(keff)(即高达2.58 W / m K)。 K)。与聚苯硫醚(PPS)-GNP纳米复合材料相比,LCP-石墨烯纳米片(GNP)纳米复合材料中LCP的原纤化也显示出更显着的keff增加。此外,由于LCP原纤维和嵌入的GNP的排列,LCP-GNP纳米复合材料的超拉伸导致纳米复合材料的keff进一步增加。实验结果还表明,与keff不同,纳米复合材料的电导率(σ)不受聚合物基质类型的影响。这表明keff和σ是通过不同的机制促进的,这提示了潜在地独立定制聚合物纳米复合材料的keff和σ的途径。

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    《Applied Physics Letters 》 |2014年第8期| 1-5| 共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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