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M. S.  Dandekar, Arabale, G., and Vijayamohanan, K., ?Preparation and characterization of composite electrodes of coconut-shell-based activated carbon and hydrous ruthenium oxide for supercapacitors?, Journal of Power Sources, vol. 141, no. 1, pp. 198-203, 2005.\par \par R. B.  Mane, Patil, S., Shirai, M., Rayalu, S. S., and Rode, C. V., ?Influence of carbon based supports on selectivity behavior of diols and propanol in Ru catalyzed glycerol hydrogenolysis?, Applied Catalysis B: Environmental, vol. 204, 2017.\par \par A.  Jadhav, Mohanraj, G. T., Gokarn, A., and Mayadevi, S., ?Synthesis of biomass waste derived activated carbon-NBR composites for automobile application?, Chemistry and Chemical Technology, vol. 12, no. 2, pp. 236-243, 2018.\par \par A.  Jadhav, Mohanraj, G., Gokarn, A., and Mayadevi, S., ?Ferets diameter estimation of activated carbon for effluent treatment application?, Journal of the Indian Chemical Society, vol. 96, no. 8, pp. 1067-1074, 2019.\par \par P.  Sharma, Sharma, G., and Punia, R., ?Synthesis of graphene from activated carbon at liquid nitrogen temperature and its detailed structural analysis?, Applied Physics A-Materials Science & Processing, vol. 127, no. 5, p. 319, 2021.\par \par S. A.  Patil, Suryawanshi, U. P., Harale, N. S., Patil, S. K., Vadiyar, M. M., Luwang, M. N., Anuse, M. A., Kim, J. H., and Kolekar, S. S., ?Adsorption of toxic Pb(II) on activated carbon derived from agriculture waste (Mahogany fruit shell): isotherm, kinetic and thermodynamic study?, International Journal of Environmental Analytical Chemistry, vol. 102, no. 19, pp. 8270-8286, 2022.\par \par R. G.  Bobade, Dabke, N. B., Shaikh, S. F., Lokhande, B. J., Mane, R. S., and Ambare, R. C., ?Facile chemical synthesis of BaO:MgO nanorods for designing distinctive solid-state asymmetric supercapacitor device with activated carbon?, Journal of Energy Storage, vol. 84, no. Part A, p. 110776, 2024.\par \par }