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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >An infiltration method for preparing single-wall nanotube/epoxy composites with improved thermal conductivity
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An infiltration method for preparing single-wall nanotube/epoxy composites with improved thermal conductivity

机译:一种制备热导率提高的单壁纳米管/环氧树脂复合材料的渗透方法

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摘要

Recent studies of SWNT/polymer nanocomposites identify the large interfacial thermal resistance at nanotubeanotube junctions as a primary cause for the only modest increases in thermal conductivity relative to the polymer matrix. To reduce this interfacial thermal resistance, we prepared a freestanding nanotube framework by removing the polymer matrix from a 1 wt % SWNT/PMMA composite by nitrogen gasification and then infiltrated it with epoxy resin and cured. The SWNT/epoxy composite made by this infiltration method has a micron-scale, bicontinuous morphology and much improved thermal conductivity (220% relative to epoxy) due to the more effective heat transfer within the nanotube-rich phase. By applying a linear mixing rule to the bicontinuous composite, we conclude that even at high loadings the nanotube framework more effectively transports phonons than well-dispersed SWNT bundles. Contrary to the widely accepted approaches, these findings suggest that better thermal and electrical conductivities can be accomplished via heterogeneous distributions of SWNT in polymer matrices. (c) 2006 Wiley Periodicals, Inc.
机译:SWNT /聚合物纳米复合材料的最新研究表明,在纳米管/纳米管结处的大界面热阻是相对于聚合物基体导热率仅适度增加的主要原因。为了降低这种界面热阻,我们通过氮气气化从1 wt%的SWNT / PMMA复合材料中除去聚合物基质,然后用​​环氧树脂渗透并固化,从而制备了独立的纳米管骨架。通过这种渗透方法制得的SWNT /环氧树脂复合材料具有微米级的双连续形态,并且由于在富含纳米管的相中更有效的热传递,导热性大大提高(相对于环氧树脂为220%)。通过将线性混合规则应用于双连续复合材料,我们得出的结论是,即使在高负荷下,纳米管骨架也比分散良好的SWNT束更有效地传输声子。与被广泛接受的方法相反,这些发现表明,可以通过聚合物基体中SWNT的不均匀分布来实现更好的导热性和导电性。 (c)2006年Wiley Periodicals,Inc.

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