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Graphene based room temperature flexible nanocomposites from permanently cross-linked networks

机译:永久交联网络中基于石墨烯的室温柔性纳米复合材料

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摘要

Graphene based room temperature flexible nanocomposites were prepared using epoxy thermosets for the first time. Flexible behavior was induced into the epoxy thermosets by introducing charge transfer complexes between functional groups within cross linked epoxy and room temperature ionic liquid ions. The graphene nanoplatelets were found to be highly dispersed in the epoxy matrix due to ionic liquid cation–π interactions. It was observed that incorporation of small amounts of graphene into the epoxy matrix significantly enhanced the mechanical properties of the epoxy. In particular, a 0.6 wt% addition increased the tensile strength and Young’s modulus by 125% and 21% respectively. The electrical resistance of nanocomposites was found to be increased with graphene loading indicating the level of self-organization between the ILs and the graphene sheets in the matrix of the composite. The graphene nanocomposites were flexible and behave like ductile thermoplastics at room temperature. This study demonstrates the use of ionic liquid as a compatible agent to induce flexibility in inherently brittle thermoset materials and improve the dispersion of graphene to create high performance nanocomposite materials.
机译:首次使用环氧热固性材料制备了基于石墨烯的室温柔性纳米复合材料。通过在交联的环氧树脂和室温离子液体离子内的官能团之间引入电荷转移络合物,可将柔性行为引入环氧热固性材料中。由于离子液体阳离子-π相互作用,发现石墨烯纳米片晶高度分散在环氧基质中。观察到将少量石墨烯掺入环氧基质中可显着增强环氧的机械性能。特别地,添加0.6 wt%的拉伸强度和杨氏模量分别增加了125%和21%。发现纳米复合材料的电阻随石墨烯负载的增加而增加,表明在复合材料的基质中IL与石墨烯片之间的自组织水平。石墨烯纳米复合材料具有柔韧性,在室温下的行为类似于韧性热塑性塑料。这项研究表明,使用离子液体作为相容剂可以在固有的脆性热固性材料中诱导柔韧性,并改善石墨烯的分散性,从而形成高性能的纳米复合材料。

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