graphene platelets with partial oxidation via cavitation

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[23] P.R. Gogate, A.B. Pandit, A review and assessment of hydrodynamic cavitation as a technology for the future, Ultrason. Sonochem. 12 (2005) 21–27. [24] H. Xu, B. W. Zeiger, K.S. Suslick, Sonochemical synthesis of nanomaterials, Chem. Soc. Rev. 42 (2013) 2555–2567. [25] K. S. Suslick, J. J. Gawienowski, P. F. Schubert, H. H. Wang, Alkane sonochemistry, J. Phys. Chem. 87 (1983) 2299–2301. [26] UK Patent GB2545060B, Apparatus and method for bulk production of atomically thin 2-dimensional materials including graphene, 2018. [27] P.M. Kanthale, P.R. Gogate, A.B. Pandit, A.M. Wilhelm, Dynamics of cavitational bubbles and design of a hydrodynamic cavitational reactor: cluster approach, Ultrason. Sonochem. 12 (2005) 441–452. [28] Mason, Applied Sonochemistry, p54. [29] M. Murakami, Morphology and polymerization mechanism of one-dimensional graphite polymer, poly-peri-naphthalene, Synth. Met. 18 (1987) 531–536. [30] H. Kamo, M. Yudasaka, S. Kurita, T. Matsui, R. Kikuchi, Y. Ohki, S. Yoshimura, Formation of poly-peri-naphthalene thin films by chemical vapour deposition, Synth. Met. 68 (1994) 61–63. [31] M. Treier, C.A. Pignedoli, T. Laino, R. Rieger, K. Mullen, D. Passerone, R. Fasel, Surface- assisted cyclodehydrogenation provides a synthetic route towards easily processable and chemically tailored nanographenes, Nat. Chem. 3 (2011) 61–67. [32] T. Vencel, J. Donovalova, A. Gaplovsky, T. Kimura, S. Toma, Oxygen exclusion from organic solvents using ultrasound and comparison with other common techniques used in photochemical experiments, Chem. Pap. 59 (2005) 271–274. [33] J.A. Schetz, A.E. Fuhs (Eds.), Handbook of Fluid Dynamics and Fluid Machinery: Fundamentals of Fluid Dynamics, Volume I, Wiley & Sons Inc., Chichester, 1996, pp161–162. [34] K. Krishnamoorthy, M. Veerapandian, K. Yun, S.-J. Kim, The chemical and structural analysis of graphene oxide with different degrees of oxidation, Carbon 53 (2013) 38– 49. [35] D.W. Johnson, B.P. Dobson, K.S. Coleman, A manufacturing perspective on graphene dispersions, Curr. Opin. Colloid Interface Sci. 20 (2015) 367–382. 13

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