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Simple Technique of Exfoliation and Dispersion of Multilayer Graphene from Natural Graphite by Ozone-Assisted Sonication

机译:臭氧辅助超声从天然石墨中剥离和分散多层石墨烯的简单技术

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摘要

Owing to its unique properties, graphene has attracted tremendous attention in many research fields. There is a great space to develop graphene synthesis techniques by an efficient and environmentally friendly approach. In this paper, we report a facile method to synthesize well-dispersed multilayer graphene (MLG) without using any chemical reagents or organic solvents. This was achieved by the ozone-assisted sonication of the natural graphite in a water medium. The frequency or number of ozone treatments plays an important role for the dispersion in the process. The possible mechanism of graphene exfoliation and the introduction of functional groups have been postulated. The experimental setup is unique for ozone treatment and enables the elimination of ozone off-gas. The heat generated by the dissipation of ultrasonic waves was used as it is, and no additional heat was supplied. The graphene dispersion was stable, and no evidence of aggregation was observed---even after several months. The characterization results show that well-dispersed MLG was successfully synthesized without any significant damage to the overall structure. The graphene obtained by this method has potential applications in composite materials, conductive coatings, energy storage, and electronic devices.
机译:由于其独特的性能,石墨烯在许多研究领域引起了极大的关注。通过有效和环保的方法来开发石墨烯合成技术的空间很大。在本文中,我们报告了一种无需使用任何化学试剂或有机溶剂即可合成分散良好的多层石墨烯(MLG)的简便方法。这是通过在水介质中对天然石墨进行臭氧辅助超声处理来实现的。臭氧处理的频率或次数对过程中的分散起着重要作用。推测了石墨烯剥离的可能机理和官能团的引入。实验装置是臭氧处理所独有的,可以消除臭氧废气。照原样使用由超声波消散产生的热量,并且不提供额外的热量。石墨烯分散体是稳定的,甚至在几个月后也没有观察到聚集的迹象。表征结果表明,已成功合成了分散良好的MLG,而对整体结构没有任何重大损害。通过这种方法获得的石墨烯在复合材料,导电涂层,能量存储和电子设备中具有潜在的应用。

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