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Alkaline Benzoquinone Aqueous Flow Battery for Large-Scale Storage of Electrical Energy

机译:碱性苯甲醌水流电池,用于大规模存储电能

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摘要

An aqueous flow battery based on low-cost, nonflammable, noncorrosive, and earth-abundant elements is introduced. During charging, electrons are stored in a concentrated water solution of 2,5-dihydroxy-1,4-benzoquinone, which rapidly receives electrons with inexpensive carbon electrodes without the assistance of any metal electrocatalyst. Electrons are withdrawn from a second water solution of a food additive, potassium ferrocyanide. When these two solutions flow along opposite sides of a cation-conducting membrane, this flow battery delivers a cell potential of 1.21 V, a peak galvanic power density of 300 mW cm(-2), and a coulombic efficiency exceeding 99%. Continuous cell cycling at 100 mA cm(-2) shows a capacity retention rate of 99.76% cycle(-1) over 150 cycles. Various molecular modifications involving substitution for hydrogens on the aryl ring are implemented to block decomposition by nucleophilic attack of hydroxide ions. These modifications result in increased capacity retention rates of up to 99.96% cycle(-1) over 400 consecutive cycles, accompanied by changes in voltage, solubility, kinetics, and cell resistance. Quantum chemistry calculations of a large number of organic compounds predict a number of related structures that should have even higher performance and stability. Flow batteries based on alkaline-soluble dihydroxybenzoquinones and derivatives are promising candidates for large-scale, stationary storage of electrical energy.
机译:引入了一种基于低成本,不易燃,无腐蚀且富含地球的元素的水流电池。在充电过程中,电子被存储在2,5-二羟基-1,4-苯醌的浓水溶液中,该溶液可以通过廉价的碳电极快速接收电子,而无需任何金属电催化剂的帮助。从第二食品添加剂亚铁氰化钾水溶液中抽出电子。当这两种溶液沿着阳离子导电膜的相反两侧流动时,该液流电池的电池电势为1.21 V,峰值电功率密度为300 mW cm(-2),库仑效率超过99%。在100 mA cm(-2)下连续进行的电池循环显示150个循环中的容量保持率为99.76%循环(-1)。实施了涉及取代芳基环上的氢的各种分子修饰,以阻止氢氧根离子的亲核攻击而分解。这些修改导致在400个连续循环中,容量保持率提高了高达99.96%cycle(-1),并伴随电压,溶解度,动力学和电池电阻的变化。大量有机化合物的量子化学计算可预测许多相关结构,这些结构应具有更高的性能和稳定性。基于碱溶性二羟基苯醌及其衍生物的液流电池有望用于大规模,静态的电能存储。

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