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Magnetic Ionic Liquid Nanocatalyst to Improve Mechanical and Thermal Properties of Epoxy Nanocomposites

机译:磁离子液体纳米催化剂改善环氧纳米复合材料的机械和热性能

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摘要

New magnetic imidazolium ionic liquid (IIL) was synthesized to improve the curing, mechanical, and thermal characteristics of the epoxy/polyamine system. In this respect, 2-(4-minophenyl)-1.3-bis(triethoxysilyl)-1H-imidazol-3-ium acetate as IIL was synthesized and characterized by different spectroscopy tools. The IIL was used as capping to prepare Fe3O4 nanoparticles (NPs) as new Fe3O4-IIL NPs. The thermal stability, morphology, crystal lattice structures, and magnetic properties were evaluated to confirm the formation of uniform, thermal, stable, and superparamagnetic Fe3O4-IIL NPs. The prepared Fe3O4-IIL NPs were mixed with an epoxy/polyamine system to improve the curing, thermal, and mechanical properties of epoxy through chemical reactions. The dynamic mechanical analyzer and differential scanning calorimeter were used to investigate the flexibility and storage modulus of the cured epoxy/polyamine system in the absence and presence of Fe3O4-IIL NPs. The atomic force microscope and scanning electron microscope were used to evaluate the dispersion and embedding of Fe3O4-IIL NPs into epoxy matrix. The thermal, mechanical, and surface morphologies data confirmed that the incorporation of Fe3O4-IIL NPs using 3 wt. % during the curing of an epoxy/polyamine system produces superior epoxy films without cracks, holes, and NPs agglomeration.
机译:合成了新的磁性咪唑鎓离子液体(IIL)以改善环氧树脂/多胺系统的固化,机械和热特性。在这方面,通过不同的光谱工具合成和以IIL合成2-(4-迷苯基)-1.3-双(三氧基甲硅烷基)-1H-咪唑-3-Ium乙酸盐。 IIL被用作封顶,以制备Fe3O4纳米颗粒(NPS)作为新的Fe3O4-Iil NPS。评估热稳定性,形态,晶格结构和磁性,以确认形成均匀,热,稳定和超顺磁Fe3O4-1IL NPS。将制备的Fe3O4-1il NP与环氧/多胺系统混合,以通过化学反应改善环氧树脂的固化,热和机械性能。动态机械分析仪和差示扫描量热计用于探讨Created环氧树脂/多胺系统在Fe3O4-Iil NPS的情况下的柔韧性和储存模量。原子力显微镜和扫描电子显微镜用于评估Fe3O4-Iil NPS进入环氧基质的分散和嵌入。热,机械和表面形态数据证实,使用3重量加入Fe3O4-Iil NPS。在固化环氧树脂/多胺系统期间的%在没有裂缝,孔和NPS附聚的情况下产生优异的环氧膜。

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