Chronopoulos Demetrios D, Bakandritsos Aristides, Pykal Martin, Zbořil Radek, Otyepka Michal
Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry, Palacký University Olomouc, tř. 17. listopadu 12, 771 46 Olomouc, Czech Republic.
Appl Mater Today. 2017 Dec;9:60-70. doi: 10.1016/j.apmt.2017.05.004.
Fluorographene, formally a two-dimensional stoichiometric graphene derivative, attracted remarkable attention of the scientific community due to its extraordinary physical and chemical properties. We overview the strategies for the preparation of fluorinated graphene derivatives, based on top-down and bottom-up approaches. The physical and chemical properties of fluorographene, which is considered as one of the thinnest insulators with a wide electronic band gap, are presented. Special attention is paid to the rapidly developing chemistry of fluorographene, which was advanced in the last few years. The unusually high reactivity of fluorographene, which can be chemically considered perfluorinated hydrocarbon, enables facile and scalable access to a wide portfolio of graphene derivatives, such as graphene acid, cyanographene and allyl-graphene. Finally, we summarize the so far reported applications of fluorographene and fluorinated graphenes, spanning from sensing and bioimaging to separation, electronics and energy technologies.
氟化石墨烯,正式名称为二维化学计量石墨烯衍生物,因其非凡的物理和化学性质而引起了科学界的极大关注。我们概述了基于自上而下和自下而上方法制备氟化石墨烯衍生物的策略。介绍了被认为是具有宽电子带隙的最薄绝缘体之一的氟化石墨烯的物理和化学性质。特别关注了近年来迅速发展的氟化石墨烯化学。氟化石墨烯具有异常高的反应活性,从化学角度可视为全氟烃,这使得能够轻松且可扩展地获得多种石墨烯衍生物,如石墨烯酸、氰基石墨烯和烯丙基石墨烯。最后,我们总结了迄今为止报道的氟化石墨烯和氟化石墨烯衍生物的应用,涵盖从传感和生物成像到分离、电子和能源技术等领域。