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Effects of alignment of graphene flakes on water permeability of graphene-epoxy composite film

机译:石墨烯薄片取向对石墨烯-环氧复合薄膜透水性的影响

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In this study, the electric field-assisted alignment of graphene flakes in B-stage graphene-epoxy composite film was demonstrated. Compared with conventional electric field-induced alignment method which involves curing liquid phase polymer matrix, the electric field application on B-stage composite film with controlled viscosity can achieve graphene flake alignment without any curing reactions, thereby enabling further processes such as film application, assembly and curing. B-stage graphene-epoxy composite was prepared by solution-mixing method, and electric field was applied parallel to the film with various temperature and electric field strengths. Cross-sectional SEM images revealed that graphene flakes were horizontally aligned better as film viscosity decreased and electric field strength increased. However, curing reaction at high temperature should be considered because high temperature was needed to achieve low viscosity. The aligned graphene-epoxy composite film showed lower water vapor transmission rate (WVTR).
机译:在这项研究中,证明了B级石墨烯-环氧复合膜中石墨烯薄片的电场辅助取向。与涉及固化液相聚合物基体的常规电场诱导取向方法相比,在具有可控粘度的B级复合膜上施加电场可以实现石墨烯薄片取向,而无需任何固化反应,从而可以进行进一步的过程,例如膜施加,组装和固化。通过溶液混合法制备B-阶段石墨烯-环氧树脂复合材料,并以不同的温度和电场强度平行于薄膜施加电场。横截面SEM图像显示,随着膜粘度降低和电场强度增加,石墨烯薄片更好地水平排列。但是,由于需要高温以实现低粘度,因此应考虑高温下的固化反应。取向石墨烯-环氧树脂复合膜显示出较低的水蒸气透过率(WVTR)。

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