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10 References 154. McCreery, R.L., Advanced Carbon Electrode Materials for Molecular Electrochemistry. Chemical Reviews, 2008. 108(7): p. 2646-2687. 155. Chen, P. and R.L. McCreery, Control of Electron Transfer Kinetics at Glassy Carbon Electrodes by Specific Surface Modification. Analytical Chemistry, 1996. 68(22): p. 3958-3965. 156. Blaedel, W.J. and R.C. Engstrom, Investigations of the Ferricyanide-Ferrocyanide System by Pulsed Rotation Voltammetry. Analytical Chemistry, 1978. 50(3): p. 476- 479. 157. Galus, Z. and R.N. Adams, The investigation of the kinetics of moderately rapid electrode reactions using rotating disk electrodes. Journal of Physical Chemistry, 1963. 67(4): p. 866-871. 158. Miller, M.A., et al., Kinetic study of electrochemical treatment of carbon fiber microelectrodes leading to in situ enhancement of vanadium flow battery efficiency. Journal of the Electrochemical Society, 2016. 163(9): p. A2095-A2102. 159. Rabbow, T.J., et al., Variability within a single type of polyacrylonitrile-based graphite felt after thermal treatment. Part II: chemical properties. Electrochimica Acta, 2015. 173: p. 24-30. 160. Perry, M.L. and A.Z. Weber, Advanced Redox-Flow Batteries: A Perspective. Journal of The Electrochemical Society, 2016. 163(1): p. A5064-A5067. 161. Tichter, T., et al., Theory of cyclic voltammetry in random arrays of cylindrical microelectrodes applied to carbon felt electrodes for vanadium redox flow batteries. Physical chemistry chemical physics : PCCP, 2019. 21(18): p. 961-968. 162. Sohr, R., L. Müller, and R. Landsberg, Elektrochemische Untersuchungen am Redoxsystem Hexacyanoferrat(II)/Hexacyanoferrat(III)an Graphitelektroden. Journal of Electroanalytical Chemistry, 1974. 50(1): p. 55-63. 163. Fletcher, S. and T.S. Varley, Beyond the Butler-Volmer equation. Curved Tafel slopes from steady-state current-voltage curves. Physical Chemistry Chemical Physics, 2011. 13(12): p. 5359-5364. 140PDF Image | Electron Transfer Kinetics in Redox Flow Batteries
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