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Recent Advances and Trends of Nanofilled/Nanostructured Epoxies

机译:纳米填充/纳米结构环氧树脂的最新进展和趋势

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摘要

This paper aims at reviewing the works published in the last five years (2016–2020) on polymer nanocomposites based on epoxy resins. The different nanofillers successfully added to epoxies to enhance some of their characteristics, in relation to the nature and the feature of each nanofiller, are illustrated. The organic–inorganic hybrid nanostructured epoxies are also introduced and their strong potential in many applications has been highlighted. The different methods and routes employed for the production of nanofilledanostructured epoxies are described. A discussion of the main properties and final performance, which comprise durability, of epoxy nanocomposites, depending on chemical nature, shape, and size of nanoparticles and on their distribution, is presented. It is also shown why an efficient uniform dispersion of the nanofillers in the epoxy matrix, along with strong interfacial interactions with the polymeric network, will guarantee the success of the application for which the nanocomposite is proposed. The mechanisms yielding to the improved properties in comparison to the neat polymer are illustrated. The most important applications in which these new materials can better exploit their uniqueness are finally presented, also evidencing the aspects that limit a wider diffusion.
机译:本文旨在审查基于环氧树脂的聚合物纳米复合材料在过去五年(2016-2020)上发表的作品。示出了不同的纳米填料以增强其与每个纳米填充物的性质的一些特征,以增强它们的一些特征。还介绍了有机无机杂化纳米结构环氧化,并突出了许多应用中的强潜力。描述了用于生产纳米填充/纳米结构环氧树脂的不同方法和途径。讨论了作为纳米颗粒复合材料的耐久性的主要性质和最终性能,这取决于纳米颗粒和分布的化学性质,形状和尺寸和其分布。还示出了为什么纳米填充物在环氧基质中的有效均匀分散,以及与聚合物网络的强界面相互作用,将保证提出纳米复合材料的应用的成功。示出了与纯聚合物相比的改善性能的机制。最终呈现这些新材料可以更好地利用其唯一性的最重要的应用,也展示了限制更广泛扩散的方面。

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