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graphene production via nonoxidizing liquid exfoliation

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64. Bergin SD, Sun Z, Rickard D, Streich PV, Hamilton JP, Coleman JN. Multicomponent solubility parameters for single-walled carbon nanotube− solvent mixtures. ACS nano. 2009;3(8):2340-2350. 65. Hansen CM. Hansen solubility parameters: a user's handbook. CRC press; 2007. 66. Shih C-J, Lin S, Strano MS, Blankschtein D. Understanding the stabilization of liquid-phase- exfoliated graphene in polar solvents: molecular dynamics simulations and kinetic theory of colloid aggregation. Journal of the American Chemical Society. 2010;132(41):14638-14648. 67. Israelachvili JN. Intermolecular and surface forces. Academic press; 2015. 68. Geng H-Z, Lee DS, Kim KK, Han GH, Park HK, Lee YH. Absorption spectroscopy of surfactant-dispersed carbon nanotube film: modulation of electronic structures. Chemical Physics Letters. 2008;455(4):275-278. 69. Vigolo B, Penicaud A, Coulon C, et al. Macroscopic fibers and ribbons of oriented carbon nanotubes. Science. 2000;290(5495):1331-1334. 70. Wenseleers W, Vlasov II, Goovaerts E, Obraztsova ED, Lobach AS, Bouwen A. Efficient Isolation and Solubilization of Pristine Single‐Walled Nanotubes in Bile Salt Micelles. Advanced Functional Materials. 2004;14(11):1105-1112. 71. Lin S, Shih C-J, Strano MS, Blankschtein D. Molecular insights into the surface morphology, layering structure, and aggregation kinetics of surfactant-stabilized graphene dispersions. Journal of the American Chemical Society. 2011;133(32):12810-12823. 72. Coleman JN. Liquid‐Phase Exfoliation of Nanotubes and Graphene. Advanced Functional Materials. 2009;19(23):3680-3695. 73. Lotya M, King PJ, Khan U, De S, Coleman JN. High-concentration, surfactant-stabilized graphene dispersions. ACS nano. 2010;4(6):3155-3162. 74. Parviz D, Das S, Ahmed HT, Irin F, Bhattacharia S, Green MJ. Dispersions of non-covalently functionalized graphene with minimal stabilizer. Acs Nano. 2012;6(10):8857-8867. 73

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