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Green Preparation of Aqueous Graphene Dispersion and Study on Its Dispersion Stability

机译:含石墨烯水分散的绿色制备及其分散稳定性研究

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摘要

The large-scale preparation of stable graphene aqueous dispersion has been a challenge in the theoretical research and industrial applications of graphene. This study determined the suitable exfoliation agent for overcoming the van der Waals force between the layers of expanded graphite sheets using the liquid-phase exfoliation method on the basis of surface energy theory to prepare a single layer of graphene. To evenly and stably disperse graphene in pure water, the dispersants were selected based on Hansen solubility parameters, namely, hydrophilicity, heterocyclic structure and easy combinative features. The graphene exfoliation grade and the dispersion stability, number of layers and defect density in the dispersion were analysed under Tyndall phenomenon using volume sedimentation method, zeta potential analysis, scanning electron microscopy, Raman spectroscopy and atomic force microscopy characterization. Subsequently, the long-chain quaternary ammonium salt cationic surfactant octadecyltrimethylammonium chloride (0.3 wt.%) was electrolyzed in pure water to form ammonium ions, which promoted hydrogen bonding in the remaining oxygen-containing groups on the surface of the stripped graphene. Forming the electrostatic steric hindrance effect to achieve the stable dispersion of graphene in water can exfoliate a minimum of eight layers of graphene nanosheets; the average number of layers was less than 14. The 0.1 wt.% (sodium dodecylbenzene sulfonate: melamine = 1:1) mixed system forms π–π interaction and hydrogen bonding with graphene in pure water, which allow the stable dispersion of graphene for 22 days without sedimentation. The findings can be beneficial for the large-scale preparation of waterborne graphene in industrial applications.
机译:稳定石墨烯水分散体的大规模制备在石墨烯的理论研究和工业应用中是一项挑战。该研究确定了使用基于表面能理论基于表面能理论的液相剥离法克服膨胀石墨片层之间的范德瓦尔斯力的合适的剥离剂,以制备单层石墨烯。在纯水中均匀且稳定地分散石墨烯,基于汉森溶解度参数,即亲水性,杂环结构和易于组合特征来选择分散剂。使用体积沉降方法,Zeta电位分析,扫描电子显微镜,拉曼光谱和原子力显微镜表表征,在Tyndall现象下分析了分散体中的石墨烯剥离等级和分散数和缺陷密度。随后,在纯水中在纯水中电解长链季铵盐阳离子表面活性剂十八烷基三甲基氯化铵(0.3重量%)以形成铵离子,其在剥离石墨烯表面上促进剩余的含氧基团中的氢键。形成静电空间阻断效果以实现石墨烯在水中的稳定分散体可以去角质八层石墨烯纳米晶片;平均层数小于14. 0.1重量%(十二烷基苯磺酸钠:三聚氰胺= 1:1)混合系统在纯水中形成与石墨烯的π-π相互作用和氢键,这允许石墨烯的稳定分散22天没有沉降。该研究结果可能有利于工业应用中的水性石墨烯的大规模制备。

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