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Mechanical Property and Structure of Covalent Functionalised Graphene/Epoxy Nanocomposites

机译:共价官能化石墨烯/环氧纳米复合材料的力学性能和结构

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摘要

Thermally reduced graphene nanoplatelets were covalently functionalised via Bingel reaction to improve their dispersion and interfacial bonding with an epoxy resin. Functionalised graphene were characterized by microscopic, thermal and spectroscopic techniques. Thermal analysis of functionalised graphene revealed a significantly higher thermal stability compared to graphene oxide. Inclusion of only 0.1 wt% of functionalised graphene in an epoxy resin showed 22% increase in flexural strength and 18% improvement in storage modulus. The improved mechanical properties of nanocomposites is due to the uniform dispersion of functionalised graphene and strong interfacial bonding between modified graphene and epoxy resin as confirmed by microscopy observations.
机译:通过Bingel反应将热还原的石墨烯纳米片共价官能化,以改善其分散性和与环氧树脂的界面键合。通过显微镜,热学和光谱学技术对功能化石墨烯进行了表征。与氧化石墨烯相比,官能化石墨烯的热分析显示出明显更高的热稳定性。环氧树脂中仅包含0.1 wt%的官能化石墨烯可显示出22%的抗弯强度提高和18%的储能模量提高。纳米复合材料的改善的机械性能是由于官能化石墨烯的均匀分散以及改性石墨烯和环氧树脂之间的牢固界面键合所致,正如显微镜观察所证实的那样。

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