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Research Progress of the Liquid-Phase Exfoliation and Stable Dispersion Mechanism and Method of Graphene

机译:液相剥离和稳定分散机理及石墨烯方法的研究进展

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摘要

Graphene is a honeycomb hexagonal two-dimensional (2D) crystal nanomaterial with a thickness of only 0.334 nm. It has been widely used and studied because of its ultra-thin 2D nano-characteristics and excellent electrical, thermal, optical, and mechanical properties. With the continuous in-depth study of graphene, the liquid-phase dispersion of graphene has also achieved breakthroughs. This review summarizes the research progress of the liquid-phase exfoliation mechanism, exfoliation method, stable dispersion mechanism, and dispersion method of graphene in recent years. The research situations of the Hamaker constant theory in exfoliation mechanism and Hansen solubility coefficient theory in stable dispersion mechanism are mainly discussed. The shortcomings of the research are summarized and analyzes the graphene liquid phase dispersed in the important challenge in the future. The stable dispersion method of graphene is also summarized. In the future, the π-π interaction will be the most potential method for studying graphene stabilization.
机译:石墨烯是蜂窝六方二维(2D)晶体纳米材料,厚度仅为0.334nm。它已被广泛使用和研究,因为其超薄的2D纳米特性和优异的电气,热,光学和机械性能。随着石墨烯的连续深入研究,石墨烯的液相分散也取得了突破。该综述总结了近年来石墨烯液相剥离机理,剥落法,稳定分散机理和分散方法的研究进展。主要讨论了哈马克恒定理论在稳定分散机构中扑除机理和汉森溶解度系数理论的研究情况。总结了该研究的缺点,并分析了将来分散在重要挑战中的石墨烯液相。还总结了石墨烯的稳定分散方法。在未来,π-π相互作用将是研究石墨烯稳定的最潜力的方法。

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