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Dynamics of carbon nanotube alignment by electric fields

机译:电场使碳纳米管排列的动力学

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The dynamics of multiwall carbon nanotube (MWCNT) alignment inside viscous media using electric fields is investigated. Electrical current measurements were performed in situ during the application of an electric field to liquid solutions of deionized water or dissolved polymer containing MWCNTs. The variation of electrical current over time was associated to the dynamics of the MWCNT network formation. The influence of the electric field magnitude and frequency on the MWCNT network formation was studied. MWCNT migration towards the negative electrode was observed when a direct current electric field was applied, whereas formation of an aligned MWCNT network was achieved for an alternating current electric field. The increase of the electric field frequency promotes a faster formation of an aligned MWCNT network and thinner MWCNT bundles. A higher viscosity of the liquid medium yields slower MWCNT alignment evidenced by a slower change of electrical current through the viscous system. An analytical model based on the dielectrophoresis-induced torque, which considers the viscosity of the medium, is also proposed to explain the dynamics of MWCNT alignment. Furthermore, aligned MWCNT/polysulfone solid composites were fabricated and electrically characterized. The solid composites presented anisotropic electrical conductivity, which was more evident for low MWCNT concentrations (0.1-0.2wt%).
机译:利用电场研究了粘性介质内部多壁碳纳米管(MWCNT)排列的动力学。在将电场施加到去离子水或含有MWCNT的溶解聚合物的液体溶液中的过程中,进行了电流测量。电流随时间的变化与MWCNT网络形成的动力学有关。研究了电场强度和频率对MWCNT网络形成的影响。当施加直流电场时,观察到MWCNT向负极迁移,而对于交流电场,则形成对准的MWCNT网络。电场频率的增加促进了对齐的MWCNT网络和更薄的MWCNT束的更快形成。液体介质的粘度越高,产生的MWCNT排列就越慢,这是通过粘性系统的电流变化较慢所证明的。提出了一种基于介电电泳引起的扭矩的分析模型,该模型考虑了介质的粘度,以解释MWCNT排列的动力学。此外,制备了定向的MWCNT /聚砜固体复合材料并进行了电学表征。固体复合材料具有各向异性的电导率,这在低MWCNT浓度(0.1-0.2wt%)时更为明显。

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