graphene production via nonoxidizing liquid exfoliation

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118. Muthoosamy K, Manickam S. State of the art and recent advances in the ultrasound-assisted synthesis, exfoliation and functionalization of graphene derivatives. Ultrasonics Sonochemistry. 2017;39(Supplement C):478-493. 119. Liu L, Shen Z, Liang S, Yi M, Zhang X, Ma S. Graphene for reducing bubble defects and enhancing mechanical properties of graphene/cellulose acetate composite films. Journal of Materials Science. 2014;49(1):321-328. 120. Liang S, Shen Z, Yi M, et al. Effects of Processing Parameters on Massive Production of Graphene by Jet Cavitation. Journal of nanoscience and nanotechnology. 2015;15(4):2686- 2694. 121. Liu J, Yang H, Zhen SG, et al. A green approach to the synthesis of high-quality graphene oxide flakes via electrochemical exfoliation of pencil core. RSC Advances. 2013;3(29):11745- 11750. 122. Abdelkader AM, Kinloch IA, Dryfe RA. Continuous electrochemical exfoliation of micrometer-sized graphene using synergistic ion intercalations and organic solvents. ACS applied materials & interfaces. 2014;6(3):1632-1639. 123. Abdelkader A, Cooper A, Dryfe R, Kinloch I. How to get between the sheets: a review of recent works on the electrochemical exfoliation of graphene materials from bulk graphite. Nanoscale. 2015;7(16):6944-6956. 124. Li P, Bae SH, Zan QY, Kim NH, Lee JH. One-step process for the exfoliation and surface modification of graphene by electrochemical method. Paper presented at: Specialized Collections2015. 125. Mensing JP, Kerdcharoen T, Sriprachuabwong C, et al. Facile preparation of graphene–metal phthalocyanine hybrid material by electrolytic exfoliation. Journal of Materials Chemistry. 2012;22(33):17094-17099. 78

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