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Electron Transfer Kinetics in Redox Flow Batteries

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Electron Transfer Kinetics in Redox Flow Batteries ( electron-transfer-kinetics-redox-flow-batteries )

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10 References 76. Xu, Q., T.S. Zhao, and C. Zhang, Performance of a vanadium redox flow battery with and without flow fields. Electrochimica Acta, 2014. 142: p. 61-67. 77. Darling, R.M. and M.L. Perry, The Influence of Electrode and Channel Configurations on Flow Battery Performance. Journal of the Electrochemical Society, 2014. 161(9): p. A1381-A1387. 78. Gundlapalli, R. and S. Jayanti, Performance characteristics of several variants of interdigitated flow fields for flow battery applications. Journal of Power Sources, 2020. 467: p. 228225. 79. Gurieff, N., et al., Mass Transport Optimization for Redox Flow Battery Design. Applied Sciences, 2020. 10(8): p. 2801. 80. Viswanathan, V., et al., Cost and performance model for redox flow batteries. Journal of Power Sources, 2014. 247: p. 1040-1051. 81. Mohamed, M.R., S.M. Sharkh, and F.C. Walsh. Redox flow batteries for hybrid electric vehicles: Progress and challenges. 2009. 82. Dennison, C.R., et al., Enhancing Mass Transport in Redox Flow Batteries by Tailoring Flow Field and Electrode Design. Journal of the Electrochemical Society, 2016. 163(1): p. A5163-A5169. 83. Ke, X., et al., Rechargeable redox flow batteries: Maximum current density with electrolyte flow reactant penetration in a serpentine flow structure. 2017. 84. Xu, Q. and T.S. Zhao, Determination of the mass-transport properties of vanadium ions through the porous electrodes of vanadium redox flow batteries. Physical Chemistry Chemical Physics, 2013. 15(26): p. 1841-1848. 85. Pezeshki, A.M., et al., High performance electrodes in vanadium redox flow batteries through oxygen-enriched thermal activation. Journal of Power Sources, 2015. 294: p. 333-338. 86. Prifti, H., et al., Membranes for Redox Flow Battery Applications. Membranes, 2012. 2(2): p. 275. 87. Zhou, X.L., et al., Performance of a vanadium redox flow battery with a VANADion membrane. APPLIED ENERGY, 2016. 180: p. 353-359. 133

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