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Periodically striped films produced from super-aligned carbon nanotube arrays

机译:由超取向碳纳米管阵列制成的周期性条纹膜

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摘要

We report a novel way to draw films from super-aligned carbon nanotube arrays at large drawing angles. The obtained super-aligned carbon nanotube films have a periodically striped configuration with alternating thinner and thicker film sections, and the width of the stripes is equal to the height of the original arrays. Compared with ordinary uniform films, the striped films provide a better platform for understanding the mechanism of spinning films from arrays because carbon nanotube junctions are easily observed and identified at the boundary of the stripes. Further studies show that the carbon nanotube junctions are bottleneck positions for thermal conduction and mechanical strength of the film, but do not limit its electrical conduction. These films can be utilized as striped and high-degree polarized light emission sources. Our results will be valuable for new applications and future large-scale production of tunable super-aligned carbon nanotube films.
机译:我们报告了一种新颖的方法,可以在大拉伸角度下从超取向碳纳米管阵列拉伸薄膜。所获得的超取向碳纳米管膜具有周期性的条纹结构,具有交替变薄和变厚的膜部分,并且条纹的宽度等于原始阵列的高度。与普通的均匀膜相比,条纹膜提供了一个更好的平台,可以更好地理解从阵列纺丝膜的机理,因为在条纹的边界处很容易观察到并识别出碳纳米管结。进一步的研究表明,碳纳米管结是薄膜热传导和机械强度的瓶颈位置,但并不限制其电传导。这些薄膜可用作条纹和高度偏振的发光源。我们的结果将对可调谐超取向碳纳米管薄膜的新应用和未来的大规模生产有价值。

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