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Preparation, Characterization, and Applications of Electrospun Carbon Nanofibers

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Preparation, Characterization, and Applications of Electrospun Carbon Nanofibers ( preparation-characterization-and-applications-electrospun-ca )

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Electrospinning and Electrospraying - Techniques and Applications References [1] Burda C, Chen XB, Narayanan R, El-Sayed MA. Chemistry and properties of nanocrystals of different shapes. Chemical Reviews. 2005;105:1025-1102. DOI: 10.1021/cr030063a [2] De Jong KP, Geus JW. Carbon nanofibers: Catalytic synthesis and applications. Catalysis Reviews. 2000;42:481-510. DOI: 10.1081/ CR-100101954 [3] Vamvakaki V, Tsagaraki K, Chaniotakis N. Carbon nanofiber-based glucose biosensor. Analytical Chemistry. 2006;78:5538-5542. DOI: 10.1021/ ac060551t [4] Kim C, Yang KS, Kojima M, Yoshida K, Kim YJ, Kim YA, et al. Fabrication of electrospinning‐derived carbon nanofiber webs for the anode material of lithium‐ion secondary batteries. Advanced Functional Materials. 2006;16:2393-2397. DOI: 10.1002/ adfm.200500911 [5] Huang CB, Chen SL, Reneker DH, Lai CL, Hou HQ. High‐strength mats from electrospun poly(p‐phenylene biphenyltetracarboximide) nanofibers. Advanced Materials. 2006;18:668-671. DOI: 10.1002/adma.200501806 [6] Donnet JB, Bansal RC. Carbon Fibers. New York: Marcel Dekker; 1990 [7] Wang Y, Santiago-Aviles JJ. Conductivity measurement of electrospun PAN-based carbon nanofiber. Journal of Materials Science Letters. 2002;21:1055-1057 [8] Yoon B, Wai CM. Microemulsion- templated synthesis of carbon nanotube-supported Pd and Rh nanoparticles for catalytic applications. Journal of the American Chemical Society. 2005;127(49):17174-17175. DOI: 10.1021/ja055530f [9] Selvamani A, Babu CM, Ramkumar V, Sundaravel B. Reduced graphene oxide decorated Au nanoparticles as an efficient electrode for the determination of hydroquinone. Nano Progress. 2019;1:9-14 [10] Day TM, Unwin PR, Macpherson JV. Factors controlling the electrodeposition of metal nanoparticles on pristine single walled carbon nanotubes. Nano Letters. 2007;7:51-57. DOI: 10.1021/nl061974d [11] Lin Z, Ji L, Zhang X. Electrodeposition of platinum nanoparticles onto carbon nanofibers for electrocatalytic oxidation of methanol. Materials Letters. 2009;63:2115-2118. DOI: 10.1016/j. matlet.2009.07.005 [12] Yuan G, Gopiraman M, Cha HJ, Soo HD, Chung IM, Kim IS. Interconnected ruthenium dioxide nanoparticles anchored on graphite oxide: Highly efficient candidate for solvent-free oxidative synthesis of imines. Journal of Industrial and Engineering Chemistry. 2017;46:279-288. DOI: 10.1016/j. jiec.2016.10.040 [13] Gopiraman M, Deng D, Babu SG, Hayashi T, Karvembu R, Kim IS. Sustainable and versatile CuO/ GNS nanocatalyst for highly efficient base free coupling reactions. ACS Sustainable Chemical Engineering. 2015;3:2478-2488. DOI: 10.1021/ acssuschemeng.5b00542 [14] Gopiraman M, Babu SG, Khatri Z, Kai W, Kim YA, Endo M, et al. Dry synthesis of easily tunable nano ruthenium supported on graphene: Novel nanocatalysts for aerial oxidation of alcohols and transfer hydrogenation of ketones. The Journal of Physical Chemistry C. 2013;117:23582-23596. DOI: 10.1021/jp402978q 12

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