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A review of fundamental principles and applications of polymer nanocomposites filled with both nanoclay and nano-sized carbon allotropes - Graphene and carbon nanotubes

机译:用纳米粘土和纳米碳含量 - 石墨烯和碳纳米管填充填充聚合物纳米复合材料的基本原理及应用的综述

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Advancements in polymer/nanoclay nanocomposites have supported the development of distinctive preparation strategies and characteristic features. High-performance polymer/nanoclay nanocomposites have applications in aerospace, automotive, construction, environmental, and biomedicine. To further improve polymer/nanoclay nanocomposite performance, nanoclay nanobifillers have been considered. In this regard, nano-sized carbon allotropes are potential contenders to form nanoclay nanobifillers. This article presents a detailed and state-of-the-art review on polymer/nanoclay nanobifiller nanocomposites. The primary focus of this pioneering effort is to deliver an up-to-date overview on polymer/nanoclay nanobifiller nanocomposites along with their categorization, fabrication, properties, and uses. Nanoclay nanobifiller designs using carbon nanotube, graphene, and fullerene are considered. Consequently, ensuing nanocomposite categories are discussed including polymer/nanoclay-carbon nanotube, polymer/nanoclay-graphene, and polymer/nanoclay-fullerene nanocomposites. The dispersion properties and alignment of nanoclay nanobifiller in polymeric nanocomposites have been investigated. Enhancing the interfacial bonding strength between matrix and nanoclay nanobifiller enhances the resulting nanocomposite physical properties. Application areas for polymer/nanoclay nanobifiller nanocomposites include supercapacitors, non-flammable materials, and self-healing materials. The discussion also highlights potential future directions for this emerging research field. Forthcoming advancements in polymer/nanoclay nanobifiller nanocomposites must focus the intensive design control, nanobifiller functionality, new processing techniques, superior dispersion, and enhanced features to further broaden the application prospects of these materials.
机译:聚合物/纳米粘土纳米复合材料的进步支持开发独特的制备策略和特征。高性能聚合物/纳米粘土纳米复合材料具有航空航天,汽车,建筑,环境和生物医学的应用。为了进一步改善聚合物/纳米粘土纳米复合材料性能,已考虑纳米粘土纳米异化物。在这方面,纳米尺寸的碳异滴产品是形成纳米粘土纳米异化器的潜在竞争者。本文介绍了聚合物/纳米粘土纳米异化纳米复合材料的详细和最先进的综述。这种开创性努力的主要焦点是在聚合物/纳米粘土纳米异化纳米复合材料以及它们的分类,制造,性质和用途中提供最新概述。考虑使用碳纳米管,石墨烯和富勒烯的纳米粘土纳米异化器设计。因此,讨论了随后的纳米复合材料类别,包括聚合物/纳米粘土 - 碳纳米管,聚合物/纳米粘土 - 石墨烯和聚合物/纳米烷 - 富勒烯纳米复合材料。研究了在聚合物纳米复合材料中的纳米粘土纳米异化物的分散性质和对准。提高基质和纳米粘土纳米异化物之间的界面粘合强度,增强了所得的纳米复合物理性质。聚合物/纳米粘土纳米异化物纳米复合材料的应用区域包括超级电容器,不易燃材料和自我愈合材料。讨论还突出了这一新兴研究领域的潜在未来方向。即将到来的聚合物/纳米粘土纳米异化纳米复合材料的进展必须集中密集的设计控制,纳米异物功能,新的加工技术,优异的分散和增强特征,以进一步扩大这些材料的应用前景。

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