Molecular Dynamics Simulation for the Effect of Fluorinated Graphene Oxide Layer Spacing on the Thermal and Mechanical Properties of Fluorinated Epoxy Resin

环氧树脂 材料科学 石墨烯 复合材料 热膨胀 氧化物 热导率 纳米复合材料 玻璃化转变 分子动力学 动态力学分析 模数 热的 聚合物 纳米技术 热力学 物理 计算化学 化学 冶金
作者
Qijun Duan,Jun Xie,Guowei Xia,Chaoxuan Xiao,Xinyu Yang,Qing Xie,Zhengyong Huang
出处
期刊:Nanomaterials [Multidisciplinary Digital Publishing Institute]
卷期号:11 (5): 1344-1344 被引量:11
标识
DOI:10.3390/nano11051344
摘要

Traditional epoxy resin (EP) materials have difficulty to meet the performance requirements in the increasingly complex operating environment of the electrical and electronic industry. Therefore, it is necessary to study the design and development of new epoxy composites. At present, fluorinated epoxy resin (F-EP) is widely used, but its thermal and mechanical properties cannot meet the demand. In this paper, fluorinated epoxy resin was modified by ordered filling of fluorinated graphene oxide (FGO). The effect of FGO interlayer spacing on the thermal and mechanical properties of the composite was studied by molecular dynamics (MD) simulation. It is found that FGO with ordered filling can significantly improve the thermal and mechanical properties of F-EP, and the modification effect is better than that of FGO with disordered filling. When the interlayer spacing of FGO is about 9 Å, the elastic modulus, glass transition temperature, thermal expansion coefficient, and thermal conductivity of FGO are improved with best effect. Furthermore, we calculated the micro parameters of different systems, and analyzed the influencing mechanism of ordered filling and FGO layer spacing on the properties of F-EP. It is considered that FGO can bind the F-EP molecules on both sides of the nanosheets, reducing the movement ability of the molecular segments of the materials, so as to achieve the enhancement effect. The results can provide new ideas for the development of high-performance epoxy nanocomposites.

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