graphene production via nonoxidizing liquid exfoliation

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24. Matsumoto M, Saito Y, Park C, Fukushima T, Aida T. Ultrahigh-throughput exfoliation of graphite into pristine ‘single-layer’graphene using microwaves and molecularly engineered ionic liquids. Nature chemistry. 2015;7(9):730-736. 25. Parvez K, Wu Z-S, Li R, et al. Exfoliation of graphite into graphene in aqueous solutions of inorganic salts. Journal of the American Chemical Society. 2014;136(16):6083-6091. 26. Qian W, Hao R, Hou Y, et al. Solvothermal-assisted exfoliation process to produce graphene with high yield and high quality. Nano Research. 2009;2(9):706-712. 27. Smith RJ, Lotya M, Coleman JN. The importance of repulsive potential barriers for the dispersion of graphene using surfactants. New Journal of Physics. 2010;12(12):125008. 28. Wu X, Liu Y, Yang H, Shi Z. Large-scale synthesis of high-quality graphene sheets by an improved alternating current arc-discharge method. RSC Advances. 2016;6(95):93119-93124. 29. Yang Y, Lu F, Zhou Z, Song W, Chen Q, Ji X. Electrochemically cathodic exfoliation of graphene sheets in room temperature ionic liquids N-butyl, methylpyrrolidinium bis (trifluoromethylsulfonyl) imide and their electrochemical properties. Electrochimica Acta. 2013;113:9-16. 30. Terrones M, Botello-Méndez AR, Campos-Delgado J, et al. Graphene and graphite nanoribbons: Morphology, properties, synthesis, defects and applications. Nano Today. 2010;5(4):351-372. 31. Wissler M. Graphite and carbon powders for electrochemical applications. Journal of Power Sources. 2006;156(2):142-150. 32. Wu Z-S, Ren W, Gao L, Liu B, Jiang C, Cheng H-M. Synthesis of high-quality graphene with a pre-determined number of layers. Carbon. 2009;47(2):493-499. 33. Knirsch KC, Englert JM, Dotzer C, Hauke F, Hirsch A. Screening of the chemical reactivity of three different graphite sources using the formation of reductively alkylated graphene as a model reaction. Chemical Communications. 2013;49(92):10811-10813. 69

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