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Ultra-high dispersion of graphene in polymer composite via solvent free fabrication and functionalization

机译:通过无溶剂制备和功能化,石墨烯在聚合物复合材料中的超高分散性

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The drying process of graphene-polymer composites fabricated by solution-processing for excellent dispersion is time consuming and suffers from a restacking problem. Here, we have developed an innovative method to fabricate polymer composites with well dispersed graphene particles in the matrix resin by using solvent free powder mixing and in-situ polymerization of a low viscosity oligomer resin. We also prepared composites filled with up to 20?wt% of graphene particles by the solvent free process while maintaining a high degree of dispersion. The electrical conductivity of the composite, one of the most significant properties affected by the dispersion, was consistent with the theoretically obtained effective electrical conductivity based on the mean field micromechanical analysis with the Mori-Tanaka model assuming ideal dispersion. It can be confirmed by looking at the statistical results of the filler-to-filler distance obtained from the digital processing of the fracture surface images that the various oxygenated functional groups of graphene oxide can help improve the dispersion of the filler and that the introduction of large phenyl groups to the graphene basal plane has a positive effect on the dispersion.
机译:通过溶液加工制造的石墨烯-聚合物复合材料的干燥过程具有出色的分散性,这很耗时,并且存在重堆积问题。在这里,我们已经开发出一种创新的方法,可以通过使用无溶剂粉末混合和低粘度低聚物树脂的原位聚合来制造在基体树脂中具有良好分散的石墨烯颗粒的聚合物复合材料。我们还通过无溶剂工艺制备了填充量高达20wt%的石墨烯颗粒的复合材料,同时保持了较高的分散度。复合材料的电导率是受分散影响最显着的特性之一,它与基于平均场微机械分析的理论获得的有效电导率一致,其中Mori-Tanaka模型假设理想的分散性。通过查看从断裂表面图像的数字处理获得的填充物到填充物距离的统计结果可以确认,氧化石墨烯的各种含氧官能团可以帮助改善填充物的分散性,并且引入石墨烯基面上的大苯基对分散有积极影响。

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