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graphene production via nonoxidizing liquid exfoliation

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85. Chen J, Li Y, Huang L, Li C, Shi G. High-yield preparation of graphene oxide from small graphite flakes via an improved Hummers method with a simple purification process. Carbon. 2015;81:826-834. 86. He D, Shen L, Zhang X, Wang Y, Bao N, Kung HH. An efficient and eco‐friendly solution‐ chemical route for preparation of ultrastable reduced graphene oxide suspensions. AIChE Journal. 2014;60(8):2757-2764. 87. Eigler S, Dotzer C, Hirsch A. Visualization of defect densities in reduced graphene oxide. Carbon. 2012;50(10):3666-3673. 88. Rozada R, Paredes JI, López MJ, et al. From graphene oxide to pristine graphene: revealing the inner workings of the full structural restoration. Nanoscale. 2015;7(6):2374-2390. 89. Park S, Ruoff RS. Chemical methods for the production of graphenes. Nature nanotechnology. 2009;4(4):217. 90. Gengler RY, Spyrou K, Rudolf P. A roadmap to high quality chemically prepared graphene. Journal of Physics D: Applied Physics. 2010;43(37):374015. 91. Thakur S, Karak N. Alternative methods and nature-based reagents for the reduction of graphene oxide: A review. Carbon. 2015;94(Supplement C):224-242. 92. Parvez K, Yang S, Feng X, Müllen K. Exfoliation of graphene via wet chemical routes. Synthetic Metals. 2015;210:123-132. 93. Yu P, Lowe SE, Simon GP, Zhong YL. Electrochemical exfoliation of graphite and production of functional graphene. Current Opinion in Colloid & Interface Science. 2015;20(5):329-338. 94. Al-Hazmi FS, Al-Harbi GH, Beall GW, Al-Ghamdi A, Obaid A, Mahmoud WE. Synthesis and structure of high quality graphene prepared via solvothermal exfoliation of intercalated graphite flakes. Superlattices and Microstructures. 2015;86:270-274. 95. Sasikala SP, Poulin P, Aymonier C. Advances in Subcritical Hydro‐/Solvothermal Processing of Graphene Materials. Advanced Materials. 2017. 75

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