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Functionalization of graphene: Covalent and non-covalent approaches, derivatives and applications (Review)

机译:石墨烯的功能化:共价和非共价方法,衍生物和应用(综述)

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摘要

Graphene, the two-dimensional sp2-hybridized carbon, is currently, without any doubt, the most intensively studied material. This single-atom-thick sheet of carbon atoms arrayed in a honeycomb pattern is the world's thinnest, strongest, and stiffest material, as well as being an excellent conductor of both heat and electricity. Despite the great application potential, it is worth mentioning that graphene itself possesses zero band gap as well as inertness to reaction, which weakens the competitive strength of grapheme in the field of semiconductors and sensors. The functionalization of pristine graphene sheets with organic functional groups has been developed for several purposes. The main purpose is the dispersibility of graphene in common organic solvents that is usually obtained after attachment of certain organic groups. The dispersion of graphene sheets in organic solvents is a crucial move toward the formation of nanocomposite materials with graphene.
机译:毫无疑问,石墨烯是二维sp2杂化碳,是研究最深入的材料。这种以蜂窝状排列的单原子厚的碳原子片是世界上最薄,最坚固和最硬的材料,同时也是热和电的极佳导体。尽管具有巨大的应用潜力,但值得一提的是,石墨烯本身具有零带隙以及对反应的惰性,这削弱了石墨烯在半导体和传感器领域的竞争实力。已经开发了具有有机官能团的原始石墨烯片的官能化用于多种目的。主要目的是石墨烯在常见有机溶剂中的分散性,通常是在连接某些有机基团后获得的。石墨烯片在有机溶剂中的分散是朝着与石墨烯形成纳米复合材料的关键一步。

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