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Cyclable membraneless redox flow batteries based on immiscible liquid electrolytes: Demonstration with all-iron redox chemistry

机译:基于不混溶的液体电解质的可循环膜氧化还原电池:全铁氧化还原化学示范

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摘要

Membraneless redox flow batteries reported to date are microscale designs that have shown poor capacity retention and cyclability due to reactant crossover. Here, we present a new design of macroscale membraneless redox flow battery capable of recharging and recirculation of the same electrolyte streams for multiple cycles and maintains the advantages of the decoupled power and energy densities. The battery is based on immiscible aqueous anolyte and organic catholyte liquids, which exhibits high capacity retention and columbic efficiency during cycling. The aqueous anolyte consists of iron(II) sulfate (FeSO4) as active species, which is immiscible with the catholyte, having iron(III) acetylacetonate (Fe(acac)(3)) as active species dissolved in water-immiscible ethyl acetate, supported by ionic liquid (1-butyl-l-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide). Over 60% of initial discharge capacity was retained and over 80% of columbic efficiency was sustained after 25 cycles in a test flow cell, which is among the highest reported thus far. (c) 2018 Elsevier Ltd. All rights reserved.
机译:迄今为止报告的膜氧化还原电池是显微尺寸设计,其由于反应性交叉而显着的容量保留和可行性。在这里,我们提出了一种新的宏观膜氧化还原流电池,其能够对多个循环进行再充电和再循环相同的电解质流,并保持去耦功率和能量密度的优点。电池基于不混溶的含水阳极 - 水溶液和有机阳极液体,在循环期间表现出高容量的保留和牙牙效率。含水阳极电解液由铁(II)硫酸盐(FeSO 4)作为活性物质组成,其与阴极电解液不混溶,铁(III)乙酰丙酮(Fe(ACAC)(3))作为溶解在水不混溶的乙酸乙酯中的活性物质,由离子液体(1-丁基-L-甲基吡咯烷鎓双(三氟甲基磺酰基)酰亚胺)负载。超过60%的初始放电容量被保留,并且在测试流动细胞中25个循环后持续超过80%的牙牙效率,这是迄今为止最高报道的最高报道。 (c)2018年elestvier有限公司保留所有权利。

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