Department of Chemical Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, Canada.
Sci Rep. 2013;3:1378. doi: 10.1038/srep01378.
Exploiting the emulsification properties of low cost, environmentally safe Gum Arabic we demonstrate a high yield process to produce a few layer graphene with a low defect ratio, maintaining the pristine graphite structure. In addition, we demonstrate the need for and efficacy of an acid hydrolysis treatment to remove the polymer residues to produce 100% pure graphene. The scalable process gives yield of up to 5 wt% graphene based on 10 g starting graphite. The graphene product is compared with reduced graphene oxide produced through Hummer's method using UV-visible spectroscopy, SEM, TEM, and Raman spectroscopy. The two graphene materials show significant difference in these characterizations. Further, the film fabricated from this graphene exhibits 20 times higher electrical conductivity than that of the reduced graphene oxide. Sonication processing of graphite with environmentally approved biopolymers such as Gum Arabic opens up a scalable avenue for production of cheap graphene.
我们利用低成本、环境友好的阿拉伯胶的乳化特性,展示了一种高产率的方法,可生产出具有低缺陷比的少层石墨烯,同时保持原始石墨结构。此外,我们还证明了酸水解处理的必要性和有效性,该处理可以去除聚合物残留物,以生产出 100%纯石墨烯。该可扩展的工艺可提供高达 5wt%的基于起始石墨 10g 的石墨烯产率。通过使用 UV-可见光谱、SEM、TEM 和拉曼光谱,将所得石墨烯产品与通过 Hummer 方法制备的还原氧化石墨烯进行了比较。这两种石墨烯材料在这些特性上表现出显著差异。此外,由这种石墨烯制成的薄膜的电导率比还原氧化石墨烯高 20 倍。使用环境认可的生物聚合物(如阿拉伯胶)对石墨进行超声处理为生产廉价石墨烯开辟了一条可扩展的途径。