Ngoc Diep Le, Thi Kim Oanh Nguyen, Ho Phuong Thao Le, Duy Linh Nguyen, M. Dang, D. Doan
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引用次数: 0
摘要
本文介绍了用聚乙烯醇(PVA)修饰的热还原石墨烯的制备方法,这种石墨烯可用作基于聚氨酯(PU)的导电水性涂料。采用 Hummer 法从石墨中氧化出氧化石墨(GO),然后用热还原 GO 法形成石墨烯。将石墨烯分散到不同浓度和质量比的 PVA 溶液中对其进行改性,以优化改性过程。用 PVA 修饰的石墨烯很容易分散在水中。异佛尔酮二异氰酸酯与聚(四甘醇)和二羟甲基丙酸发生聚合反应,制备出水性聚氨酯成膜聚合物。聚合物颗粒表面的羧酸官能团使聚合物颗粒在水中分散良好且稳定,因此这种聚合工艺不使用任何表面活性剂。表征方法包括场发射扫描电子显微镜与能量色散 X 射线光谱(FESEM-EDX)、比表面积测量、拉曼微光谱、电阻测量...石墨烯基导电涂料具有良好的附着力,干漆膜的导电率为 0.1-4 mS/cm,干漆膜中的石墨烯含量约为 5-10 wt%。
Graphene thermally modified with polyvinyl alcohol applied as conductive water-based paints based on polyurethane
This paper presents the fabrication of thermally reduced graphene modified with polyvinyl alcohol (PVA), which can be used as a conductive water-based paint based on polyurethane (PU). Graphite oxide (GO) was oxidised from graphite by the Hummer method, and then graphene was formed by the thermal-reducing GO method. The graphene was modified by dispersing it into a PVA solution with various concentrations and mass ratios to optimise the modification process. The graphene modified with PVA could be easily dispersed in water. Water-borne PU film-forming polymer was prepared by polymerisation reaction between isophorone diisocyanate with poly(tetramethylene glycol) and dimethylolpropionic acid. The carboxylate functional groups on the surface of the polymer particles make the polymer particles dispersed well and stable in water, so this polymerisation process does not use any surfactants. The characterisation methods included field emission scanning electron microscope with energy-dispersive X-ray spectroscopy (FESEM-EDX), specific surface area measurement, Raman microspectroscopy, resistance measurement... The graphene-based conductive paint has good adhesion, conductivity of the dry paint film was from 0.1-4 mS/cm with graphene content in the dry paint film was about 5-10 wt%.