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High aspect ratio CNT structures produced by energetic ion bombardment

机译:通过高能离子轰击产生的高纵横比CNT结构

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Earlier research has sought to utilize the exceptional thermal conductivity of CNTs to produce a heat spreader by bulk cross-linking the CNTs into an interpenetrating network. An isotropic thermal conductivity of 2150 W/m-K was measured in a 5 urn thick MWCNT film which had been subject to argon ion bombardment with an ion energy of 4 keV and a fluence on the order of 10~(17) ions/cm~2. While energetic ions will randomly bombard the entire CNT network, on occasion, one will strike a junction where two or more CNTs are touching, momentarily disrupting them. CNTs have the remarkable ability to self-heal, and m doing so, the disrupted junction self-heals into a new interpenetrating junction. However, practical heat spreader applications require films at least 100 times thicker than this initial demonstration. To achieve this, substantially higher ion energies and fluence were applied. But rather than forming interpenetrating junctions deeper into the bulk of a CNT thick film, an interesting new form of high aspect ratio structure results, where groups of CNTs are now vertically aligned, even though the original CNT thick film was randomly oriented. There is also a sharp transition at the base of these structures from the new aligned form to the original randomly oriented form. We consider various aspects of ion-induced sputter dynamics coupled to the growth processes of CNTs to account for these new aligned high aspect ratio structures. The role of ion channeling within and between CNTs is also considered.
机译:早期的研究试图利用CNT的出色导热性,通过将CNT整体交联成互穿网络来生产散热器。在5 thick厚的MWCNT薄膜中测得2150 W / mK的各向同性热导率,该薄膜已受到4keV离子能量和10〜(17)离子/ cm〜2量级的通量的氩离子轰击。 。尽管高能离子会随机轰击整个CNT网络,但有时,一个离子会撞到两个或多个CNT接触的接合点,从而瞬间破坏它们。 CNT具有出色的自我修复能力,在这种情况下,被破坏的结会自我修复成新的互穿结。但是,实际的散热器应用需要的薄膜厚度至少要比该初始演示的厚度大100倍。为了实现这一点,使用了更高的离子能量和能量密度。但是,与其形成在CNT厚膜主体中更深的互穿结,不如产生一种有趣的高长宽比结构的新形式,即使原来的CNT厚膜是随机取向的,现在各组CNT也垂直对齐。从新的对齐形式到原始的随机定向形式,这些结构的基础也有一个急剧的转变。我们考虑了与CNTs的生长过程相关的离子诱导溅射动力学的各个方面,以说明这些新的对齐的高纵横比结构。还考虑了CNT内部和之间的离子通道作用。

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