Redox Flow Batteries Concepts Chemistries

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US 4485154, 1984. [32] M. Skyllas-Kazacos, M. Rychcik, R.G. Robins, A.G. Fane, New All-Vanadium Redox Flow Cell, J. Electrochem. Soc. (1986) 10571058. [33] H.S. Lim, A.M. Lackner, R.C. Knechtli, Zinc-Bromine Secondary Battery, J. Electrochem. Soc. 124 (1977) 11541157. doi:10.1149/1.2133517. [34] M.L. Perry, R.M. Darling, R. Zaffou, High Power Density Redox Flow Battery Cells, ECS Trans. 53 (2013) 716. doi:10.1149/05307.0007ecst. [35] A.A. Akhil, G. Huff, A.B. Currier, B.C. Kaun, D.M. Rastler, S.B. Chen, A.L. Cotter, D.T. Bradshaw, W.D. Gauntlett, DOE / EPRI 2013 Electricity Storage Handbook in Collaboration with NRECA, 2013. [36] S. Eckroad, Vanadium Redox Flow Batteries An In-Depth Analysis, 2007. [37] L. Livermore, N. Labs, L. Livermore, N. Labs, E. Independence, A. Curtright, J. Apt, W. Generation, R. Guttromson, arpa-e GRIDS Program Overview, 2010. https://arpa- e.energy.gov/sites/default/files/documents/files/GRIDS_ProgramOverview.pdf. [38] M. Zhang, M. Moore, J.S. Watson, T. a. Zawodzinski, R.M. Counce, Capital Cost Sensitivity Analysis of an All-Vanadium Redox-Flow Battery, J. Electrochem. Soc. 159 (2012) A1183A1188. doi:10.1149/2.041208jes. [39] V. Viswanathan, A. Crawford, L. Thaller, D. Stephenson, S. Kim, W. Wang, G. Coffey, P. Balducci, Z. Gary, L. Li, V. Sprenkle, Estimation of Capital and Levelized Cost for Redox Flow Batteries, 2012. [40] J. Noack, N. Roznyatovskaya, T. Herr, P. Fischer, The Chemistry of Redox-Flow Batteries, Angew. Chemie Int. Ed. 54 (2015) 97769809. doi:10.1002/anie.201410823. [41] 20517. doi:10.3390/molecules201119711. [42] A.Z. Weber, M.M. Mench, J.P. Meyers, P.N. Ross, J.T. Gostick, Q. Liu, Redox flow batteries: a review, J. Appl. Electrochem. 41 (2011) 11371164. doi:10.1007/s10800- 011-0348-2. Page 50 of 63

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