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Polymer nanocomposites based on functionalized carbon nanotubes

机译:基于功能化碳纳米管的聚合物纳米复合材料

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摘要

Carbon nanotubes (CNTs) exhibit excellent mechanical, electrical, and magnetic properties as well as nanometer scale diameter and high aspect ratio, which make them an ideal reinforcing agent for high strength polymer composites. However, since CNTs usually form stabilized bundles due to Van der Waals interactions, are extremely difficult to disperse and align in a polymer matrix. The biggest issues in the preparation of CNT-reinforced composites reside in efficient dispersion of CNTs into a polymer matrix, the assessment of the dispersion, and the alignment and control of the CNTs in the matrix. There are several methods for the dispersion of nanotubes in the polymer matrix such as solution mixing, melt mixing, electrospinning, in-situ polymerization and chemical functionalization of the carbon nanotubes, etc. These methods and preparation of high performance CNT-polymer composites are described in this review. A critical comparison of various CNT functionalization methods is given. In particular, CNT functionalization using click chemistry and the preparation of CNT composites employing hyperbranched polymers are stressed as potential techniques to achieve good CNT dispersion. In addition, discussions on mechanical, thermal, electrical, electrochemical and optical properties and applications of polymer/CNT composites are included.
机译:碳纳米管(CNT)具有出色的机械,电和磁性能,并且具有纳米级的直径和高的长宽比,这使其成为高强度聚合物复合材料的理想增强剂。然而,由于CNT通常由于范德华相互作用而形成稳定的束,因此极难在聚合物基质中分散和排列。制备CNT增强复合材料的最大问题在于将CNT有效分散到聚合物基质中,评估分散性以及基质中CNT的排列和控制。有几种用于将纳米管分散在聚合物基质中的方法,例如溶液混合,熔融混合,静电纺丝,原位聚合和碳纳米管的化学官能化等。描述了这些方法和高性能CNT-聚合物复合材料的制备在这篇评论中。给出了各种CNT功能化方法的关键比较。特别地,强调了使用点击化学的CNT官能化和使用超支化聚合物制备CNT复合材料作为获得良好CNT分散性的潜在技术。此外,还包括有关机械,热,电,电化学和光学性质以及聚合物/ CNT复合材料应用的讨论。

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