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Halogen Hybrid Flow Batteries

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Halogen Hybrid Flow Batteries ( halogen-hybrid-flow-batteries )

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Energies 2022, 15, 7397 14 of 20 References Author Contributions: Conceptualization, A.A., M.P. and S.T.; investigation, L.A., A.P., N.K., P.L. and A.M.; data curation, A.G. and I.S.; writing—original draft preparation, A.A., R.P. and A.M. All authors have read and agreed to the published version of the manuscript. Funding: The study was supported by the Russian Science Foundation grant (project No. 21-73-30029). Tong contribution was supported by the Science and Technology Planning Project of Jinhua City 2022. Institutional Review Board Statement: Not applicable. Informed Consent Statement: Not applicable. Data Availability Statement: Not applicable. Conflicts of Interest: The authors declare no conflict of interest. Abbreviations Acronym or Designation CPS DER EMF EPS ESS FC HRFB MEA RDE RFB SB SDG or SDGs SHE VRFB ZIFB ZFB Definition Chemical power sources Distributed energy resources Electromotive force Electrochemical power sources Energy storage system Fuel cell Hybrid redox flow battery Membrane electrode assembly Rotating disc electrode Redox flow battery Solid battery Sustainable development goal(s) Standard hydrogen electrode Vanadium redox flow battery Zinc-iodide flow battery Zinc flow battery 1. Desa, U.N. Transforming Our World: The 2030 Agenda for Sustainable Development. Available online: https://sdgs.un.org/2030 agenda (accessed on 8 September 2022). 2. Nikam, V.; Kalkhambkar, V. A Review on Control Strategies for Microgrids with Distributed Energy Resources, Energy Storage Systems, and Electric Vehicles. Int. Trans. Electr. Energy Syst. 2021, 31, 1–26. [CrossRef] 3. Sánchez-Díez, E.; Ventosa, E.; Guarnieri, M.; Trovò, A.; Flox, C.; Marcilla, R.; Soavi, F.; Mazur, P.; Aranzabe, E.; Ferret, R. Redox Flow Batteries: Status and Perspective towards Sustainable Stationary Energy Storage. J. Power Sources 2021, 481, 228804. [CrossRef] 4. Zigouras, P. 1000 Mile Battery. Available online: http://www.epc-corporation.com/ (accessed on 8 September 2022). 5. Tang, L.; Lu, W.; Zhang, H.; Li, X. Progress and Perspective of the Cathode Materials towards Bromine-Based Flow Batteries. Energy Mater. Adv. 2022, 2022, 9850712. [CrossRef] 6. Lin, G.; Chong, P.Y.; Yarlagadda, V.; Nguyen, T.V.; Wycisk, R.J.; Pintauro, P.N.; Bates, M.; Mukerjee, S.; Tucker, M.C.; Weber, A.Z. Advanced Hydrogen-Bromine Flow Batteries with Improved Efficiency, Durability and Cost. J. Electrochem. Soc. 2016, 163, A5049–A5056. [CrossRef] 7. Braff, W.A.; Bazant, M.Z.; Buie, C.R. Membrane-Less Hydrogen Bromine Flow Battery. Nat. Commun. 2013, 4, 2346. [CrossRef] [PubMed] 8. Cho, K.T.; Tucker, M.C.; Weber, A.Z. A Review of Hydrogen/Halogen Flow Cells. Energy Technol. 2016, 4, 655–678. [CrossRef] 9. Nguyen, T.; Savinell, R.F. Flow Batteries. Electrochem. Soc. Interface 2010, 19, 54–56. [CrossRef] 10. Khor, A.; Leung, P.; Mohamed, M.R.; Flox, C.; Xu, Q.; An, L.; Wills, R.G.A.; Morante, J.R.; Shah, A.A. Review of Zinc-Based Hybrid Flow Batteries: From Fundamentals to Applications. Mater. Today Energy 2018, 8, 80–108. [CrossRef] 11. Soloveichik, G.L. Flow Batteries: Current Status and Trends. Chem. Rev. 2015, 115, 11533–11558. [CrossRef] 12. Yang, F.; Mousavie, S.M.A.; Oh, T.K.; Yang, T.; Lu, Y.; Farley, C.; Bodnar, R.J.; Niu, L.; Qiao, R.; Li, Z. Sodium–Sulfur Flow Battery for Low-Cost Electrical Storage. Adv. Energy Mater. 2018, 8, 1–8. [CrossRef] 13. Wang, W.; Luo, Q.; Li, B.; Wei, X.; Li, L.; Yang, Z. Recent Progress in Redox Flow Battery Research and Development. Adv. Funct. Mater. 2013, 23, 970–986. [CrossRef]

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