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Park MS, Lee S, Lee YS. Mechanical properties of epoxy composites reinforced with ammonia-treated graphene oxides. Carbon Lett, 21, 1 (2017). https://doi.org/10.5714/CL.2017.21.001./
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B. C. Bai, J. S. Im, and Y. S. Lee, Lyocell-based activated carbon fibers improved the adsorption of harmful gas properties when produced via dual-simultaneous treatments, Carbon Lett., 23, 69-73 (2017)./
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K. M. Lee, M. J. Kim, H. Jo, S. Y. Yeo, and Y. S. Lee, The electrical and heating properties of copper-incorporated graphite fibers fabricated using different ultrasonication techniques, Carbon Lett., 24, 111-114 (2017)./
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J. H. Kim, J. G. Kim, C. W. Lee, K. B. Lee, and J. S. Im, Effect of added mesophase pitch during the pitch synthesis reaction of PFO, Carbon Lett., 23, 48-54 (2017)./
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J.-H. Kim and Y.-S. Lee, The effects of carbon coating onto graphite filler on the structure and properties of carbon foams, Carbon Lett., 21, 111-115 (2017)./
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J. G. Kim, J. H. Kim, C. W. Lee, K. B. Lee, and J. S. Im, Effect of added mesophase pitch during the pitch synthesis reaction of PFO, Carbon Lett., 23, 48-54 (2017)./
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Mudila H, Joshi V, Rana S, Zaidi MGH, Alam S. Comparative electrochemical study of sulphonated polysulphone binded graphene oxide supercapacitor in two electrolytes. Carbon Letters, 18, 43 (2016). DOI: http://dx.doi.org/10.5714/CL.2016.18.043/
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Farooq U, Doh CH, Pervez SA, Kim DH, Lee SH, Saleem M, Sim SJ, Choi JH. Rate-capability response of graphite anode materials in advanced energy storage systems: a structural comparison. Carbon Lett, 17, 39 (2016). https://doi.org/10.5714/CL.2016.17.1.039./
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Yuan H, Meng LY, Park SJ. KOH-activated graphite nanofibers as $CO_2$ adsorbents. Carbon Lett, 19, 99 (2016). https://doi.org/10.5714/cl.2016.19.099./
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Oh SM, Lee SM, Kang DS, Roh JS. Microstructural changes of polyacrylonitrile-based carbon fibers (T300 and T700) due to isothermal oxidation (1): focusing on morphological changes using scanning electron microscopy. Carbon Lett, 18, 18 (2016). https://doi.org/10.5714/cl.2016.18.018./
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