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Processing and properties of highly enriched double-wall carbon nanotubes

机译:高浓缩双壁碳纳米管的制备及性能

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摘要

Carbon nanotubes consist of one or more concentric graphene cylinders and are under investigation for a variety of applications that make use of their excellent thermal, mechanical, electronic and optical properties. Double-wall nanotubes are ideal systems for studying the interwall interactions influencing the properties of nanotubes with two or more walls. However, current techniques to synthesize double-wall nanotubes produce unwanted single- and multiwall nanotubes. Here, we show how density gradient ultracentrifugation can be used to separate double-wall nanotubes from mixtures of single- and multiwall nanotubes through differences in their buoyant density. This technique results in samples that are highly enriched in either single- or double-wall nanotubes of similar outer wall diameter, with the double-wall nanotubes being, on average, similar to 44% longer than the single-wall nanotubes. The longer average length of the double-wall nanotubes provides distinct advantages when they are used in transparent conductors.
机译:碳纳米管由一个或多个同心的石墨烯圆柱体组成,并且正在利用其出色的热,机械,电子和光学特性进行各种应用的研究。双壁纳米管是研究影响两个或多个壁的纳米管性能的壁间相互作用的理想系统。但是,目前合成双壁纳米管的技术会产生不需要的单壁和多壁纳米管。在这里,我们展示了密度梯度超速离心如何通过浮力密度的差异将双壁纳米管与单壁和多壁纳米管的混合物分离。该技术导致样品高度富集于具有相似外壁直径的单壁或双壁纳米管,平均而言,双壁纳米管比单壁纳米管长44%。当双壁纳米管用于透明导体时,其平均长度较长,具有明显的优势。

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