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6.1.3 VRFBs with novel reactor design................................................................................... 26 6.1.4 Vanadium chloride/polyhalide RFB............................................................................... 28 6.2 Bromine-polysulphide RFB.................................................................................................... 28 6.3 Zinc/polyiodide hybrid RFB ................................................................................................... 29 6.4 Semi-solid lithium slurry RFBs ............................................................................................... 30 6.5 Redox active polymers for RFBs ............................................................................................ 31 6.6 Polyoxometalate RFB ............................................................................................................ 34 6.7 Metal-free organic-inorganic aqueous RFBs based on anthraquinones............................... 35 6.8 A RFB with an alloxazine-based organic electrolyte ............................................................. 37 6.9 TEMPO-Based Catholyte for non-aqueous RFBs................................................................... 38 7. Overview of some redox reactions of importance for RFBs ......................................................... 39 8. Conclusion: What would be the ideal RFB? .................................................................................. 43 9. Acknowledgments......................................................................................................................... 46 10. Bibliography .............................................................................................................................. 47 Page 3 of 63PDF Image | Redox Flow Batteries Concepts Chemistries
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