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A Membrane-Free Redox Flow Battery with Two Immiscible Redox Electrolytes

机译:一种无晶片氧化还原电池,具有两个不混溶的氧化还原电解质

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摘要

Flexible and scalable energy storage solutions are necessary for mitigating fluctuations of renewable energy sources. The main advantage of redox flow batteries is their ability to decouple power and energy. However, they present some limitations including poor performance, short-lifetimes, and expensive ion-selective membranes as well as high price, toxicity, and scarcity of vanadium compounds. We report a membrane-free battery that relies on the immiscibility of redox electrolytes and where vanadium is replaced by organic molecules. We show that the biphasic system formed by one acidic solution and one ionic liquid, both containing quinoyl species, behaves as a reversible battery without any membrane. This proof-of-concept of a membrane-free battery has an open circuit voltage of 1.4 V with a high theoretical energy density of 22.5 WhL(-1), and is able to deliver 90% of its theoretical capacity while showing excellent long-term performance (coulombic efficiency of 100% and energy efficiency of 70%).
机译:灵活且可扩展的能量存储解决方案对于减轻可再生能源的波动是必要的。氧化还原电池电池的主要优点是它们与能量和能量分离的能力。然而,它们存在一些限制,包括性能差,短寿命和昂贵的离子选择性膜以及钒化合物的高价格,毒性和稀缺性。我们报告了一种无晶体电池的电池,依赖于氧化还原电解质的不混溶,其中钒被有机分子取代。我们表明,由一个酸性溶液形成的双相系统和一种含有喹喔醛物种的离子液体,表现为无任何膜的可逆电池。这种无膜电池的概念概念具有1.4V的开路电压,高理论能量密度为22.5WHL(-1),并且能够提供其理论能力的90%,同时显示出优异的长 - 术语性能(Coulombic效率为100%,能量效率为70%)。

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