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Key Role of the Dispersion of Carbon Nanotubes (CNTs) within Epoxy Networks on their Ability to Release

机译:碳纳米管(CNTs)在环氧网络中对其释放能力的关键作用

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摘要

Carbon nanotube (CNT)-reinforced nanocomposites represent a unique opportunity in terms of designing advanced materials with mechanical reinforcement and improvements in the electrical and thermal conductivities. However, the toxic effects of these composites on human health have been studied, and very soon, some regulations on CNTs and on composites based on CNTs will be enacted. That is why the release of CNTs during the nanocomposite lifecycle must be controlled. As the releasing depends on the interfacial strength that is stronger between CNTs and polymers compared to CNTs in a CNT agglomerate, two dispersion states—one poorly dispersed versus another well dispersed—are generated and finely described. So, the main aim of this study is to check if the CNT dispersion state has an influence on the CNT releasing potential in the nanocomposite. To well tailor and characterize the CNT dispersion state in the polymer matrix, electronic microscopies (SEM and TEM) and also rheological analysis are carried out to identify whether CNTs are isolated, in bundles, or in agglomerates. When the dispersion state is known and controlled, its influence on the polymerization kinetic and on mechanical properties is discussed. It appears clearly that in the case of a good dispersion state, strong interfaces are generated, linking the isolated nanotubes with the polymer, whereas the CNT cohesion in an agglomerate seems much more weak, and it does not provide any improvement to the polymer matrix. Raman spectroscopy is relevant to analyze the interfacial properties and allows the relationship with the releasing ability of nanocomposites; i.e., CNTs poorly dispersed in the matrix are more readily released when compared to well-dispersed nanocomposites. The tribological tests confirm from released particles granulometry and observations that a CNT dispersion state sufficiently achieved in the nanocomposite avoids single CNT releasing under those solicitations.
机译:碳纳米管(CNT) - 重新剥削的纳米复合材料在设计具有机械加固和改进的电气和导热率方面的先进材料方面代表独特的机会。然而,已经研究了这些复合材料对人类健康的毒性作用,并且很快就会制定基于CNT的CNT和基于CNT的复合材料的一些规定。这就是为什么必须控制在纳米复合生命周期期间CNT的释放。由于释放取决于CNT聚集中CNT和聚合物之间的界面强度,与CNT附聚物中的CNT相比,两个分散状态 - 一个差分散的与另一个良好的分散良好分散 - 被产生和精细描述。因此,本研究的主要目的是检查CNT分散状态是否对纳米复合材料中的CNT释放电位有影响。在聚合物基质中的CNT分散状态下剪裁并表征CNT分散状态,进行电子显微镜(SEM和TEM),并且还进行流变分析,以鉴定CNT是否分离,束中或在附聚物中。当已知和控制分散状态时,讨论了其对聚合动力学和机械性能的影响。显然,在良好的分散状态的情况下,产生强的界面,将分离的纳米管与聚合物连接,而聚集中的CNT内聚力似乎更弱,并且它不适用于聚合物基质的任何改善。拉曼光谱相关与分析界面性质,并允许与纳米复合材料的释放能力的关系;即,与分散良好分散的纳米复合材料相比,在基质中分散在基质中不良的CNT更容易释放。摩擦学检测从释放的颗粒粒度测定法确认,观察结果,即在纳米复合材料中充分实现的CNT分散状态避免了在这些征区下的单个CNT释放。

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