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Thermal conduction in aligned carbon nanotube-polymer nanocomposites with high packing density

机译:高堆积密度的定向碳纳米管-聚合物纳米复合材料的热传导

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摘要

Nanostructured composites containing aligned carbon nanotubes (CNTs) are very promising as interface materials for electronic systems and thermoelectric power generators. We report the first data for the thermal conductivity of densified, aligned multiwall CNT nanocomposite films for a range of CNT volume fractions. A 1 vol % CNT composite more than doubles the thermal conductivity of the base polymer. Denser arrays (17 vol % CNTs) enhance the thermal conductivity by as much as a factor of 18 and there is a nonlinear trend with CNT volume fraction. This article discusses the impact of CNT density on thermal conduction considering boundary resistances, increased defect concentrations, and the possibility of suppressed phonon modes in the CNTs.
机译:包含取向碳纳米管(CNT)的纳米结构复合材料作为电子系统和热电发电机的界面材料非常有前途。我们报告了一系列的CNT体积分数的致密,对齐的多壁CNT纳米复合薄膜的热导率的第一个数据。 1%(体积)的CNT复合材料可使基础聚合物的热导率提高一倍以上。密度阵列(17体积%的CNT)将导热系数提高了18倍,并且CNT体积分数呈非线性趋势。本文讨论了考虑边界电阻,增加的缺陷浓度以及碳纳米管中抑制声子模式的可能性时,碳纳米管密度对导热的影响。

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