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graphene production via nonoxidizing liquid exfoliation

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107. Chen X, Boulos RA, Dobson JF, Raston CL. Shear induced formation of carbon and boron nitride nano-scrolls. Nanoscale. 2013;5(2):498-502. 108. Yi M, Shen Z. Kitchen blender for producing high-quality few-layer graphene. Carbon. 2014;78:622-626. 109. Varrla E, Paton KR, Backes C, et al. Turbulence-assisted shear exfoliation of graphene using household detergent and a kitchen blender. Nanoscale. 2014;6(20):11810-11819. 110. Ashokkumar M, Mason TJ. Sonochemistry. Kirk-Othmer Encyclopedia of Chemical Technology. 2007. 111. Alzari V, Nuvoli D, Sanna R, et al. In situ production of high filler content graphene-based polymer nanocomposites by reactive processing. Journal of Materials Chemistry. 2011;21(41):16544-16549. 112. Bourlinos AB, Georgakilas V, Zboril R, Steriotis TA, Stubos AK. Liquid‐phase exfoliation of graphite towards solubilized graphenes. Small. 2009;5(16):1841-1845. 113. Sim Y, Park J, Kim YJ, Seong M-J, Hong S. Synthesis of graphene layers using graphite dispersion in aqueous surfactant solutions. J Korean Phys Soc. 2011;58(4):938-942. 114. Yi M, Shen Z, Zhang X, Ma S. Achieving concentrated graphene dispersions in water/acetone mixtures by the strategy of tailoring Hansen solubility parameters. Journal of Physics D: Applied Physics. 2012;46(2):025301. 115. Zhou X, Wu T, Ding K, Hu B, Hou M, Han B. Dispersion of graphene sheets in ionic liquid [bmim][PF6] stabilized by an ionic liquid polymer. Chem. Commun. 2010;46(3):386-388. 116. Lavin-Lopez M, Valverde JL, Sanchez-Silva L, Romero A. Solvent-Based Exfoliation via Sonication of Graphitic Materials for Graphene Manufacture. Industrial & Engineering Chemistry Research. 2016;55(4):845-855. 117. Ciesielski A, Samorì P. Graphene via sonication assisted liquid-phase exfoliation. Chemical Society Reviews. 2014;43(1):381-398. 77

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