亚铁氰化物
亚铁氰化钾
流动电池
铁氰化物
化学
氧化还原
电化学
容量损失
无机化学
电解质
淡出
普鲁士蓝
电极
计算机科学
操作系统
物理化学
作者
Eric M. Fell,Diana De Porcellinis,Yan Jing,Valeria Gutierrez-Venegas,Thomas Y. George,Roy G. Gordon,Sergio Granados‐Focil,Michael J. Aziz
出处
期刊:Journal of The Electrochemical Society
[The Electrochemical Society]
日期:2023-07-01
卷期号:170 (7): 070525-070525
被引量:3
标识
DOI:10.1149/1945-7111/ace936
摘要
We assess the suitability of potassium ferri-/ferrocyanide as an electroactive species for long-term utilization in aqueous organic redox flow batteries. A series of electrochemical and chemical characterization experiments was performed to distinguish between structural decomposition and apparent capacity fade of ferri-/ferrocyanide solutions used in the capacity-limiting side of a flow battery. Our results indicate that, in contrast with previous reports, no structural decomposition of ferri-/ferrocyanide occurs at tested pH values as high as 14 in the dark or in diffuse indoor light. Instead, an apparent capacity fade takes place due to a chemical reduction of ferricyanide to ferrocyanide, via chemical oxygen evolution reaction. We find that this parasitic process can be further exacerbated by carbon electrodes, with apparent capacity fade rates at pH 14 increasing with an increased ratio of carbon electrode surface area to ferricyanide in solution. Based on these results, we report a set of operating conditions that enables the long-duration cycling of alkaline ferri-/ferrocyanide electrolytes and demonstrate how apparent capacity fade rates can be engineered by the initial system setup. If protected from direct exposure to light, the structural stability of ferri-/ferrocyanide anions allows for their practical deployment as electroactive species in long duration energy storage applications.
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