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Structural evolution and thermal conductivity of flexible graphite films prepared by carboxylic graphene/polyimide

机译:羧基石墨烯/聚酰亚胺制备的柔性石墨膜的结构演化与导热系数

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摘要

Graphene (GN) is transformed into carboxylic graphene (GO-COOH) with carboxylic groups by acidizing. Carboxylic graphene/polyimide (GO-COOH/PI) composite films are prepared by in-situ polymerization. The composite films show strong intermolecular force compared to the PI films which leads to excellent tensile strength and thermal conductivity. The composite films can be transformed into carbon films and graphite films by carbonization and graphitization. The GO-COOH can induce the graphitization process and compensate the defects. The thermal conductivity of graphite films prepared by composite films graphitized at the same temperature is higher compared to that of PI films. The addition of GO-COOH has great effects on reducing carbonization and graphitization temperature and improving property of films. The graphite films treated with 2500 degrees C possess smoother surface and the color of graphite films turn into dark grey. The films can keep the integral state and bend to a certain extent which exhibits that the flexibility of the graphite films is improved. The thermal conductivity of graphite films prepared by composite films treated with 2500 degrees C is 760.386 W/mK and increases by 128% compared to that prepared by the PI films, which is suitable for the application of heat conduction.
机译:石墨烯(GN)通过酸化转化为带有羧基的羧基石墨烯(GO-COOH)。采用原位聚合法制备了羧基石墨烯/聚酰亚胺(GO-COOH/PI)复合薄膜。与PI膜相比,复合膜表现出强大的分子间作用力,从而获得优异的拉伸强度和导热性。通过碳化和石墨化可以将复合膜转变为碳膜和石墨膜。GO-COOH可以诱导石墨化过程并补偿缺陷。与PI薄膜相比,在相同温度下石墨化的复合薄膜所制备的石墨薄膜的导热系数更高。GO-COOH的加入对降低薄膜的碳化和石墨化温度,改善薄膜性能有很大的作用。经2500℃处理的石墨薄膜具有更光滑的表面,石墨薄膜的颜色变为深灰色。薄膜能保持整体状态并在一定程度上弯曲,这表明石墨薄膜的柔韧性得到了提高。经2500℃处理的复合薄膜制备的石墨薄膜的导热系数为760.386w/mK,比PI薄膜提高了128%,适合于热传导应用。

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