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Aging and release of pristine and functionalized carbon nanotubes from epoxy-nanocomposites during accelerated weathering

机译:在加速风化期间,来自环氧树脂纳米复合材料的原始和官能化碳纳米管的老化和释放

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Epoxy-based materials are widely used for coatings, electronics insulations, and waterproofing applications due to their excellent properties such as excellent adhesion, electrical insulation, and heat resistance along with the strong mechanical property. The making of composites by mixing nanomaterials, such as carbon nanotubes (CNTs), carbon nanofibers, graphene, graphene oxide and nano-carbon black with epoxy are extensively utilized to improve their physicochemical properties. CNTs as a nano-filler in epoxy-nanomaterial composites are widely used in the improvement of their properties because they are very light, thermally stable and mechanical strength. Composites are made by filling epoxy resins through catalytic homopolymerisation, or with a wide range of co-reactants. Moreover, CNTs may have different functional groups, including -NH_2, -COOH, and -OH, depending on functionalization methods. Since epoxy resins are reactive polymers, various functional groups on CNTs may react with epoxy resins and change the nanocomposite properties during curing processes. Usually, curing agents are added in epoxy-nanomaterial resins for crosslinking, and the curing is done at high temperatures. Therefore, it is of great interest to investigate the effect of the CNT fillers with different functional groups on the property changes of epoxy-CNT composites for long-term applications. The problem of environmental aging on the change in mechanical properties, leaching of phenolic compounds and release of filler nanoparticles. Different epoxy-multiwalled-CNTs (MWCNTs) composites were prepared by filling a polymer with pure MWCNTs, NH2-, and COOH-functionalized MWCNTs to study the effect of functional groups on the properties of epoxy-MWCNT nanocomposites. We also aged the nanocomposites in an accelerated weathering chamber, which simulates actual weather conditions in summer and rainy conditions. Moreover, we collected water samples, which were used to simulate raining conditions, during the weathering process. The accelerate aging of epoxy was characterized with TGA, DSC, SEM, FTIR and an optical microscopy technique. The collected water samples were analyzed with LC/MS and dynamic light scattering. The release of CNTs from the aged composite was characterized by TEM, dynamic light scattering, and single particle-ICP-MS. The results of the interaction of different functional groups on MWCNTs with epoxy, the characterization of the aged composites, the release of MWCNTs, microplastics, and organic compounds from the aged nanocomposites will be discussed in detail at this presentation. The study could provide how molecular-level interactions between the functionalized CNTs and Epoxy polymers affect the aging and release of CNTs.
机译:基于环氧基的材料被广泛地用于涂料,电子绝缘材料,和防水应用由于其优异的性能,如优异的粘附性,电绝缘性,并具有强的机械性能沿耐热性。复合材料通过混合纳米材料,例如碳纳米管(CNT),碳纳米纤维,石墨烯,石墨烯氧化物和纳米碳黑用环氧树脂制作被广泛使用以改善其理化性质。碳纳米管作为环氧纳米材料的复合材料的纳米填料被广泛用于其性能的改善,因为它们是非常轻的,热稳定和机械强度。复合材料通过填充环氧树脂通过催化均聚,或与广泛的共反应物的制备。此外,碳纳米管可具有不同的官能团,包括-NH_2,-COOH和-OH,这取决于官能化的方法。由于环氧树脂是反应性的聚合物,其上的CNT各种官能团可以与环氧树脂反应,并在固化过程改变所述纳米复合材料的性能。通常,固化剂中的环氧纳米材料树脂中添加交联,并固化在高温下完成的。因此,这是极大的兴趣来研究CNT填料与环氧树脂复合材料CNT的长期应用属性的变化不同的官能团的效果。关于机械性能的变化的环境老化的问题,淋酚类化合物和填料的纳米颗粒的释放。不同环氧多壁-碳纳米管(多壁碳纳米管)的复合材料被填充的聚合物用纯水多壁碳纳米管,NH 2 - ,和COOH官能化的多壁碳纳米管,研究官能团对环氧基的MWCNT纳米复合材料的性能的影响制备。我们还对年龄在纳米复合材料的加速老化室,模拟夏季多雨条件下的实际天气状况。此外,我们收集水样,将其用于模拟下雨的条件下,在风化过程。环氧树脂的加速老化的特征是,TGA,DSC,SEM,FTIR和光学显微技术。所收集的水样品用LC / MS和动态光散射进行了分析。 CNT的从老化复合材料中的释放,其特征在于通过TEM,动态光散射,和单粒子-ICP-MS。在具有环氧树脂的MWCNT不同的官能团的相互作用的结果,老年人复合材料的表征,多壁碳纳米管,塑料微粒,和有机化合物的从老化的纳米复合材料的释放将被详细在此呈现的讨论。这项研究可以提供功能化碳纳米管和环氧聚合物之间分子水平的相互作用如何影响碳纳米管的老化和释放。

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