Decoupled low-cost ammonium-based electrolyte design for highly stable zinc–iodine redox flow batteries

材料科学 电解质 氧化还原 无机化学 电极 化学 有机化学 物理化学 冶金
作者
Mahboubeh Mousavi,Gaopeng Jiang,Jing Zhang,Ali Ghorbani Kashkooli,Haozhen Dou,Catherine Silva,Zachary P. Cano,Yue Niu,Aiping Yu,Zhongwei Chen
出处
期刊:Energy Storage Materials [Elsevier]
卷期号:32: 465-476 被引量:61
标识
DOI:10.1016/j.ensm.2020.06.031
摘要

Zinc-iodine redox flow batteries (ZIFBs) have emerged as promising energy storage systems due to their high-energy density. However, their practical use has been limited by their poor stability, low efficiency and high cost. In this work, we implemented a novel strategy to improve the performance and cyclability of ZIFBs, as well as decrease the chemical cost, by developing and utilizing ammonium-based electrolytes. An ammonium chloride supported zinc-iodine redox flow battery (AC-ZIFB) based on the ammonium iodide/triiodide redox couple was designed, and it achieved a high energy density of 137 Wh L -1 , Coulombic efficiency of ~99%, energy efficiency of ~80%, and a cycle-life of 2500 cycles at a 11-times lower chemical cost than conventional ZIFBs. Such improvements are mainly attributed to the multifunctional roles of cost-effective chemicals utilized in a new decoupled electrolyte design, which mitigates zinc dendrite formation, facilitates anodic and cathodic reaction kinetics and unlocks extra capacity with the primary aid of I 2 C l − formation. This straightforward, yet effective strategy, empowers the AC-ZIFB with excellent potential as a robust and practical redox flow battery and more broadly demonstrates a facile strategy of using multifunctional electrolyte chemistry to achieve a reliable, high-performance, and cost-competitive energy storage system.
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