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High thermal conductivity of polyethylene nanowire arrays fabricated by an improved nanoporous template wetting technique

机译:通过改进的纳米孔模板润湿技术制备的聚乙烯纳米线阵列的高导热性

摘要

Generally polymer bulk structures and nanostructures are thermally insulative. In this study, we show that an improved nanoporous template wetting technique can prepare thermally conductive polymer nanowire arrays. The thermal conductivities of the fabricated high-density polyethylene (HDPE) nanowire arrays with diameters of 100 nm and 200 nm, measured by a laser flash method, are about 2 orders of magnitude higher than their bulk counterparts. The estimated thermal conductivity of a single HDPE nanowire is as high as 26.5 W/mK at room temperature. The high orientation of chains of the HDPE nanowires may arise from the integrative effects of shear rate, vibrational perturbation, translocation, nanoconfinement and crystallization. Findings in this study provide useful strategies on enhancing the intrinsic thermal properties of polymer nanostructures.
机译:通常,聚合物本体结构和纳米结构是隔热的。在这项研究中,我们表明,改进的纳米孔模板润湿技术可以制备导热聚合物纳米线阵列。通过激光闪光法测得的直径为100 nm和200 nm的高密度聚乙烯(HDPE)纳米线阵列的热导率比其本体的热导率高约2个数量级。一条HDPE纳米线的估计导热率在室温下高达26.5 W / mK。 HDPE纳米线链的高取向性可能来自剪切速率,振动扰动,易位,纳米约束和结晶的综合效应。这项研究的发现为增强聚合物纳米结构的固有热性能提供了有用的策略。

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