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 186. Amatore, C.A., M.R. Deakin, and M. Wightman, Electrochemical kinetics at microelectrodes Part 1. Quasi-reversible electron transfer at cylinders. Journal of Electroanalytical Chemistry, 1986. 206(1-2): p. 23-36. 187. Bieniasz, L.K., Automatic simulation of electrochemical transients at cylindrical wire electrodes, by the adaptive Huber method for Volterra integral equations. Journal of Electroanalytical Chemistry, 2011. 662(2): p. 371-378. 188. Landon-Lane, L., A.T. Marshall, and D.A. Harrington, EIS at carbon fiber cylindrical microelectrodes. Electrochemistry Communications, 2019. 109: p. 106566. 189. Banerjee, R., et al., Characterization of carbon felt electrodes for vanadium redox flow batteries – A pore network modeling approach. Journal of Energy Storage, 2019. 21: p. 163-171. 190. Montella, C., LSV/CV modelling of electrochemical reactions with interfacial CPE behaviour, using the generalised Mittag–Leffler function. Journal of Electroanalytical Chemistry, 2012. 667: p. 38-47. 191. Yang, Z., et al., Electrochemical Energy Storage for Green Grid. Chemical Reviews, 2011. 111(5): p. 3577-3613. 192. Chakrabarti, M.H., et al., Application of carbon materials in redox flow batteries. Journal of Power Sources, 2014. 253: p. 150-166. 193. Park, M., J. Ryu, and J. Cho, Nanostructured Electrocatalysts for All‐Vanadium Redox Flow Batteries. Chemistry – An Asian Journal, 2015. 10(10): p. 2096-2110. 194. Xi, J., et al., Effect of electro-oxidation current density on performance of graphite felt electrode for vanadium redox flow battery. International Journal of Electrochemical Science, 2013. 8(4): p. 4700-4711. 195. Bismarck, A., M.E. Kumru, and J. Springer, Influence of Oxygen Plasma Treatment of PAN-Based Carbon Fibers on Their Electrokinetic and Wetting Properties. Journal of Colloid And Interface Science, 1999. 210(1): p. 60-72. 196. Estevez, L., et al., Tunable Oxygen Functional Groups as Electrocatalysts on Graphite Felt Surfaces for All‐Vanadium Flow Batteries. ChemSusChem, 2016. 9(12): p. 1455- 1461. 143

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