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Cure Kinetics of Epoxy Nanocomposites Affected by MWCNTs Functionalization: A Review

机译:MWCNTs功能化对环氧纳米复合材料固化动力学的影响

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摘要

The current paper provides an overview to emphasize the role of functionalization of multiwalled carbon nanotubes (MWCNTs) in manipulating cure kinetics of epoxy nanocomposites, which itself determines ultimate properties of the resulting compound. In this regard, the most commonly used functionalization schemes, that is, carboxylation and amidation, are thoroughly surveyed to highlight the role of functionalized nanotubes in controlling the rate of autocatalytic and vitrification kinetics. The current literature elucidates that the mechanism of curing in epoxy/MWCNTs nanocomposites remains almost unaffected by the functionalization of carbon nanotubes. On the other hand, early stage facilitation of autocatalytic reactions in the presence of MWCNTs bearing amine groups has been addressed by several researchers. When carboxylated nanotubes were used to modify MWCNTs, the rate of such reactions diminished as a consequence of heterogeneous dispersion within the epoxy matrix. At later stages of curing, however, the prolonged vitrification was seen to be dominant. Thus, the type of functional groups covalently located on the surface of MWCNTs directly affects the degree of polymer-nanotube interaction followed by enhancement of curing reaction. Our survey demonstrated that most widespread efforts ever made to represent multifarious surface-treated MWCNTs have not been directed towards preparation of epoxy nanocomposites, but they could result in property synergism.
机译:本文提供概述以强调多壁碳纳米管(MWCNT)的功能在控制环氧纳米复合材料的固化动力学中的作用,而环氧纳米复合材料本身决定了最终化合物的最终性能。在这方面,对最常用的官能化方案,即羧化和酰胺化进行了彻底调查,以突出官能化纳米管在控制自催化和玻璃化动力学速率方面的作用。当前文献阐明了在环氧/ MWCNTs纳米复合材料中的固化机理几乎不受碳纳米管功能化的影响。另一方面,一些研究人员已经在存在带有胺基的MWCNT的情况下促进自催化反应的早期阶段。当使用羧化的纳米管改性MWCNT时,由于环氧基质中的分散不均,导致此类反应的速率降低。然而,在固化的后期阶段,玻璃化时间延长占主导地位。因此,共价地位于MWCNT表面上的官能团的类型直接影响聚合物-纳米管相互作用的程度,进而影响固化反应。我们的调查表明,代表多种表面处理过的MWCNT所做的最广泛的努力并未针对环氧纳米复合材料的制备,但它们可能导致性能协同作用。

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