Ionic liquid-mediated functionalization of graphene-based materials for versatile applications: a review

作者: Chandrabhan Verma , Eno E. Ebenso

DOI: 10.1007/S41127-018-0023-Z

关键词:

摘要: Industrial applications of the graphene (G) and oxide (GO) can be further explored by making them more dispersible in aqueous organic environments. Several attempts have been performed to enhance dispersity G GO which surface functionalization is one most effective methods. Recently, using ionic liquids gaining particular emphasis because their high thermal chemical stability, low volatility, very ability dissolve a wide range compounds importantly environmental-friendly behaviour. The covalent mostly being achieved acylation, esterification, isocyanate formation, nucleophilic ring opening, amide diazotization cycloaddition reactions. Non-covalent involves electrostatic forces, hydrogen bonding, π–π interactions, van der Waals interaction donor–acceptor interactions. Because dipolar nature, strongly interact with sp2-hydrodized carbon networks sheets make as compared native networks. In present review article, we described collection reports available on non-covalent industrial applications. liquid-functionalized (G-IL) (GO-IL) are extensively used pollutants decontamination, sensing bio-sensing, lubrication, catalysis, dioxide capturing production. G-IL GO-IL represent an essential class materials for versatile future

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