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Elastomeric composites based on carbon nanomaterials

机译:基于碳纳米材料的弹性复合材料

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Carbon nanomaterials including carbon black (CB), carbon nanotubes (CNTs) and graphene have attracted increasingly more interest in academia due to their fascinating properties. These nanomaterials can significantly improve the mechanical, electrical, thermal, barrier, and flame retardant properties of elastomers. The improvements are dependent on the molecular nature of the matrix, the intrinsic property, geometry and dispersion of the fillers, and the interface between the matrix and the fillers. In this article, we briefly described the fabrication processes of elastomer composites, illuminated the importance of keeping fillers at nanoscale in matrices, and critically reviewed the recent development of the elastomeric composites by incorporating CB, CNTs, and graphene and its derivatives. Attention has been paid to the mechanical properties and electrical and thermal conductivity. Challenges and further research are discussed at the end of the article.
机译:包括炭黑(CB),碳纳米管(CNTs)和石墨烯在内的碳纳米材料因其引人入胜的性能而在学术界引起了越来越多的兴趣。这些纳米材料可以显着改善弹性体的机械,电气,热,阻隔和阻燃性能。改进取决于基体的分子性质,填料的固有性质,几何形状和分散性以及基体与填料之间的界面。在本文中,我们简要介绍了弹性体复合材料的制造过程,阐明了将填料保持在纳米级基质中的重要性,并通过掺入CB,CNT和石墨烯及其衍生物严格审查了弹性体复合材料的最新发展。已经注意机械性能以及电导率和导热率。本文结尾讨论了挑战和进一步的研究。

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