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graphene production via nonoxidizing liquid exfoliation

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55. Liu J, Notarianni M, Will G, Tiong VT, Wang H, Motta N. Electrochemically exfoliated graphene for electrode films: effect of graphene flake thickness on the sheet resistance and capacitive properties. Langmuir. 2013;29(43):13307-13314. 56. Vadukumpully S, Paul J, Valiyaveettil S. Cationic surfactant mediated exfoliation of graphite into graphene flakes. Carbon. 2009;47(14):3288-3294. 57. Bergin SD, Nicolosi V, Streich PV, et al. Towards Solutions of Single‐Walled Carbon Nanotubes in Common Solvents. Advanced Materials. 2008;20(10):1876-1881. 58. Ausman KD, Piner R, Lourie O, Ruoff RS, Korobov M. Organic solvent dispersions of single- walled carbon nanotubes: toward solutions of pristine nanotubes. The Journal of Physical Chemistry B. 2000;104(38):8911-8915. 59. Furtado C, Kim U, Gutierrez H, Pan L, Dickey E, Eklund PC. Debundling and dissolution of single-walled carbon nanotubes in amide solvents. Journal of the American Chemical Society. 2004;126(19):6095-6105. 60. Ham HT, Choi YS, Chung IJ. An explanation of dispersion states of single-walled carbon nanotubes in solvents and aqueous surfactant solutions using solubility parameters. Journal of Colloid and Interface Science. 2005;286(1):216-223. 61. Detriche S, Zorzini G, Colomer J-F, Fonseca A, Nagy J. Application of the Hansen solubility parameters theory to carbon nanotubes. Journal of nanoscience and nanotechnology. 2008;8(11):6082-6092. 62. Hernandez Y, Lotya M, Rickard D, Bergin SD, Coleman JN. Measurement of multicomponent solubility parameters for graphene facilitates solvent discovery. Langmuir. 2009;26(5):3208-3213. 63. Coleman JN. Liquid exfoliation of defect-free graphene. Accounts of chemical research. 2012;46(1):14-22. 72

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