Extending organic flow batteries via redox state management

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Extending organic flow batteries via redox state management ( extending-organic-flow-batteries-via-redox-state-management )

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References 1. Goulet, M.-A.; Aziz, M. J., Flow Battery Molecular Reactant Stability Determined by Symmetric Cell Cycling Methods. J. Electrochem. Soc. 2018, 165 (7), A1466-A1477. 2. Goodall, F. L.; Perkin, A. G., LVIII.—Reduction products of the hydroxyanthraquinones. Part V. J. Chem. Soc, Trans. 1924, 125, 470-476. 3. RDKit: Open Source Cheminformatic Software, http://www.rdkit.org/. 4. Stewart, J. J. P. MOPAC2016, Version: 17.173L. 5. Tabor, D. P.; Gómez-Bombarelli, R.; Tong, L.; Gordon, R. G.; Aziz, M. J.; Aspuru-Guzik, A., Theoretical and Experimental Investigation of the Stability Limits of Quinones in Aqueous Media: Implications for Organic Aqueous Redox Flow Batteries. 2018. ChemRxiv preprint: doi.org/10.26434/chemrxiv.6990053.v2 41

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