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Dispersion and packing of carbon nanotubes

机译:碳纳米管的分散和包装

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摘要

Suitable oxidative treatment of catalytically grown carbon nanotubes introduces oxygen containing surface groups. Infrared and titration studies indicate that they are predominately phenolic, carboxylic and lactonic groups. These groups stabilize dispersions of nanotubes at much higher concentrations than are possible with the raw material. Plots of the viscosity of dispersions as a function of their concentration show a dramatic increase in gradient above a critical concentration, leading to the formation of viscoelastic gels. During continued drying, the solvent mediates the formation of dense assemblies of nanotubes which then bond together through the surface groups. If the nanotubes are deposited from a dilute suspension by filtration they are able to maximize the number of intertube contacts by packing into a locally parallelized structure, reminiscent of liquid crystalline polymers. (C) 1998 Elsevier Science Ltd. All rights reserved. References: 24
机译:催化生长的碳纳米管的适当氧化处理引入了含氧表面基团。红外线和滴定研究表明,它们主要是酚类、羧基和内酯基团。这些基团在比原材料可能高得多的浓度下稳定纳米管的分散体。分散体粘度随其浓度变化的曲线图显示,在临界浓度以上,梯度急剧增加,导致粘弹性凝胶的形成。在持续干燥过程中,溶剂介导纳米管致密组装体的形成,然后通过表面基团粘合在一起。如果纳米管通过过滤从稀悬浮液中沉积出来,它们能够通过填充成局部平行化结构来最大化管间接触的数量,让人联想到液晶聚合物。(C) 1998 Elsevier Science Ltd.保留所有权利。[参考文献: 24]

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