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ChemSusChem 9 (2016) 1521–1543. [12] C. Choi, S. Kim, R. Kim, Y. Choi, S. Kim, H. Jung, J.H. Yang, H.-T. Kim, Renew. Sustain. Energy Rev. 69 (2017) 263–274. [13] G. Nikiforidis, A. Belhcen, M. Anouti, J. Energy Chem. 57 (2021) 238–246. [14] G. Nikiforidis, Y. Xiang, W.A. Daoud, Electrochim. Acta 157 (2015) 274–281. [15] G. Nikiforidis, W.A. Daoud, J. Electrochem. Soc. 162 (2015) A809– A819. [16] M. Anouti, E. Couadou, L. Timperman, H. Galiano, Electrochim. Acta 64 (2012) 110–117. [17] D.S. Aaron, Q. Liu, Z. Tang, G.M. Grim, A.B. Papandrew, A. Turhan, T.A. Zawodzinski, M.M. Mench, J. Power Sources 206 (2012) 450–453. Nikiforidis, G.; Anouti, M. A Vanadium Redox Flow Battery based on a highly concentrated Protic Ionic Liquid Electrolyte, LE STUDIUM Multidisciplinary Journal, 2021, 5, 1-5 https://doi.org/10.34846/le-studium.211.01.fr.01-2021 5PDF Image | Vanadium Redox Flow Battery Protic Ionic Liquid Electrolyte
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