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Carbon Nanotube Alignment Using Dielectrophoresis: A design guideline for realizing future multiwalled carbon nanotube-based devices.

机译:使用介电泳的碳纳米管对准:用于实现未来基于多壁碳纳米管的器件的设计指南。

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The excellent electrical, mechanical, and thermal properties of single- and multiwalled carbon nanotubes (MWCNTs) have led to frequent suggestions of a new class of nanoscale devices, with carbon nanotubes (CNTs) as the fundamental building block [1]?[4]. Unfortunately, the aligned CNTs can be difficult to realize, and the majority of commercially available CNTs are sold in the form of entangled bundles, which impedes their straightforward transformation into devices since almost all of the excellent properties of CNTs are highly anisotropic. For example, the thermal conductivity of CNTs is only high in the longitudinal and not the lateral direction of the nanotubes. Thus, to exploit CNTs? properties in a device, they must be first disentangled and then aligned or oriented in a preferential direction. Nanotube disentanglement can usually be achieved via the use of surfactant in a fluid medium containing the CNTs, while a variety of techniques have been developed to align the longitudinal axes of the nanotubes.
机译:单壁和多壁碳纳米管(MWCNT)的优异的电,机械和热性能已导致人们提出了以碳纳米管(CNT)为基本构造单元的新型纳米级器件的常见建议[1]?[4]。 。不幸的是,对齐的CNT可能难以实现,并且大多数市售的CNT以缠结束的形式出售,这阻碍了它们直接转变为器件,因为CNT的几乎所有优异性能都是高度各向异性的。例如,CNT的热导率仅在纳米管的纵向而不是横向上较高。因此,要开发CNT?在设备中的各种特性中,必须先将它们解开,然后在优先方向上对齐或定向。通常可以通过在包含CNT的流体介质中使用表面活性剂来实现纳米管解缠结,同时已经开发了多种技术来对齐纳米管的纵轴。

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