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A critical review on nanotube and nanotube/nanoclay related polymer composite materials

机译:对纳米管和纳米管/纳米粘土相关聚合物复合材料的评论

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Since the last decade, research activities in the area of nano-materials have been increased dramatically. More than a 1000 of journal articles in this area have been published within the last 3 years. Materials scientists and researchers have realized that the mechanical properties of materials can be altered at the fundamental level, i.e. the atomic-scale. Carbon nanotubes (hereafter called 'nanotubes') have been well recognized as nano-structural materials that can be used to alter mechanical, thermal and electrical properties of polymer-based composite materials, because of their superior properties and perfect atom arrangement. In general, scientific research related to the nanotubes and their co-related polymer based composites can be distinguished into four particular scopes: (ⅰ) production of high purity and controllable nanotubes, in terms of their size, length and chiral arrangement; (ⅱ) enhancement of interfacial bonding strength between the nanotubes and their surrounding matrix; (ⅲ) control of the dispersion properties and alignment of the nanotubes in nanotube/polymer composites and (ⅳ) applications of the nanotubes in real life. Although, so many remarkable results in the above items have been obtained recently, no concluding results have so far been finalized. In this paper, a critical review on recent research related to nanotube/polymer composites is given. Newly-adopted coiled nanotubes used to enhance the interfacial bonding strength of nanocomposites are also discussed. Moreover, the growth of nanotubes from nanoclay substrates to form exfoliated nanotube/nanoclay polymer composites is also introduced in detail.
机译:自上个十年以来,纳米材料领域的研究活动急剧增加。在过去的3年中,已经发表了1000多篇该领域的期刊文章。材料科学家和研究人员已经意识到,材料的机械性能可以在基本水平(即原子尺度)上改变。碳纳米管(以下称为“纳米管”)由于其优越的性能和完美的原子排列,已被公认为可以改变聚合物基复合材料的机械,热和电性能的纳米结构材料。通常,与纳米管及其基于共聚合物的复合材料相关的科学研究可以分为四个特定的范围:(ⅰ)在尺寸,长度和手性排列方面生产高纯度和可控制的纳米管; (ⅱ)增强纳米管及其周围基质之间的界面结合强度; (ⅲ)控制纳米管/聚合物复合材料中纳米管的分散性能和排列,以及(ⅳ)现实生活中纳米管的应用。尽管最近在上述项目中获得了如此多的显着结果,但迄今为止尚未最终确定结论。在本文中,对与纳米管/聚合物复合材料有关的最新研究进行了严格的综述。还讨论了用于增强纳米复合材料界面结合强度的新采用的盘绕纳米管。此外,还详细介绍了纳米管从纳米粘土基底生长到形成剥离的纳米管/纳米粘土聚合物复合材料的过程。

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