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Insight into the Broad Field of Polymer Nanocomposites: From Carbon Nanotubes to Clay Nanoplatelets via Metal Nanoparticles

机译:洞察聚合物纳米复合材料的广阔领域:从碳纳米管到粘土纳米片通过金属纳米粒子

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摘要

Highly ordered polymer nanocomposites are complex materials that display a rich morphological behavior owing to variations in composition, structure, and properties on a nanometer length scale. Metal-polymer nanocomposite materials are becoming more popular for applications requiring low cost, high metal surface areas. Catalytic systems seem to be the most prevalent application for a wide range of metals used in polymer nanocomposites, particularly for metals like Pt, Ni, Co, and Au, with known catalytic activities. On the other hand, among the most frequently utilized techniques to prepare polymer/CNT and/or polymer/clay nanocomposites are approaches like melt mixing, solution casting, electrospinning and solid-state shear pulverization. Additionally, some of the current and potential applications of polymer/CNT and/or polymer/clay nanocomposites include photovoltaic devices, optical switches, electromagnetic interference (EMI) shielding, aerospace and automotive materials, packaging, adhesives and coatings. This extensive review covers a broad range of articles, typically from high impact-factor journals, on most of the polymer-nanocomposites known to date: polymer/carbon nanotubes, polymer/metal nanospheres, and polymer/clay nanoplatelets composites. The various types of nanocomposites are described form the preparation stages to performance and applications. Comparisons of the various types of nanocomposites are conducted and conclusions are formulated.
机译:高度有序的聚合物纳米复合材料是复杂的材料,由于组成,结构和性质的变化(在纳米长度尺度上),它们显示出丰富的形态学行为。金属聚合物纳米复合材料在要求低成本,高金属表面积的应用中变得越来越流行。对于聚合物纳米复合材料中使用的多种金属,尤其是具有已知催化活性的金属(如Pt,Ni,Co和Au),催化系统似乎是最普遍的应用。另一方面,在制备聚合物/ CNT和/或聚合物/粘土纳米复合材料的最常用技术中,有诸如熔融混合,溶液流延,静电纺丝和固态剪切粉碎的方法。另外,聚合物/ CNT和/或聚合物/粘土纳米复合材料的当前和潜在应用包括光电器件,光开关,电磁干扰(EMI)屏蔽,航空航天和汽车材料,包装,粘合剂和涂料。这篇广泛的综述涵盖了广泛的文章,这些文章通常来自高影响因子期刊,涉及迄今已知的大多数聚合物-纳米复合材料:聚合物/碳纳米管,聚合物/金属纳米球和聚合物/粘土纳米片状复合材料。从性能和应用的制备阶段描述了各种类型的纳米复合材料。进行了各种类型的纳米复合材料的比较,并得出结论。

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