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Stability of Vanadium Electrolytes in the Vanadium Redox Flow Battery
MRS Proceedings, 2013ABSTRACTThe stability of the negative electrode electrolyte affects the efficiency and capacity of energy storage in the vanadium redox flow battery (VRFB) system. To explore the stability of vanadium electrolytes, the study prepared five types of V(II) electrolytes that were exposed to air in a fixed open area and monitored the charge state of ...
Shu-Yuan Chuang +6 more
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A review of vanadium electrolytes for vanadium redox flow batteries
Renewable and Sustainable Energy Reviews, 2017Abstract There is increasing interest in vanadium redox flow batteries (VRFBs) for large scale-energy storage systems. Vanadium electrolytes which function as both the electrolyte and active material are highly important in terms of cost and performance. Although vanadium electrolyte technologies have notably evolved during the last few decades, they
Chanyong Choi +7 more
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Vanadium flow batteries at variable flow rates
Journal of Energy Storage, 2022A. Karrech +2 more
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Novel vanadium chloride/polyhalide redox flow battery
Journal of Power Sources, 2003Abstract This paper describes a novel redox flow cell which employs a polyhalide solution in the positive half-cell electrolyte and a vanadium(II)/vanadium(III) chloride redox couple as the negative half-cell electrolyte. During charging, the bromide ions in the positive half-cell are considered to undergo oxidation to the polyhalide ion Br 2 Cl ...
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Nanostructuring versus microstructuring in battery electrodes
Nature Reviews Materials, 2022Rishabh Jain, Shyam Sharma
exaly
Perovskite enables high performance vanadium redox flow battery
Chemical Engineering Journal, 2022Yingqiao Jiang +6 more
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