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A symmetric organic-based nonaqueous redox flow battery and its state of charge diagnostics by FTIR

机译:一种对称的有机非水氧化还原液流电池及其FTIR的充电状态诊断

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摘要

Redox flow batteries have shown outstanding promise for grid-scale energy storage to promote utilization of renewable energy and improve grid stability. Nonaqueous battery systems can potentially achieve high energy density because of their broad voltage window. In this paper, we report a new organic redox-active material for use in a nonaqueous redox flow battery, 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (PTIO) that has high solubility (>2.6 M) in organic solvents. PTIO exhibits electrochemically reversible disproportionation reactions and thus can serve as both anolyte and catholyte redox materials in a symmetric flow cell. The PTIO flow battery has a moderate cell voltage of ∼1.7 V and shows good cyclability under both cyclic voltammetry and flow cell conditions. Moreover, we demonstrate that FTIR can offer accurate estimation of the PTIO concentration in electrolytes and determine the state of charge of the PTIO flow cell, suggesting FTIR as a powerful online battery status sensor. This study is expected to inspire more insights in this under-addressed area of state of charge analysis aiming at operational safety and reliability of flow batteries.
机译:氧化还原液流电池对于电网规模的储能具有显着的前景,可促进可再生能源的利用并提高电网的稳定性。非水电池系统由于其宽的电压窗口而可能潜在地实现高能量密度。在本文中,我们报告了一种用于非水氧化还原液流电池的新型有机氧化还原活性材料,具有高溶解度的2-苯基-4,4,5,5-四甲基咪唑啉-1-氧基-3-氧化物(PTIO) (> 2.6 M)在有机溶剂中。 PTIO具有电化学可逆歧化反应,因此可以在对称流通池中同时用作阳极电解液和阴极电解液的氧化还原材料。 PTIO液流电池的电池电压约为1.7 V,在循环伏安法和液流电池条件下均显示出良好的循环能力。此外,我们证明FTIR可以提供电解质中PTIO浓度的准确估计并确定PTIO流通池的充电状态,这表明FTIR是功能强大的在线电池状态传感器。这项研究有望在针对充电电池操作安全性和可靠性的充电状态分析这一未得到充分解决的领域中激发更多的见识。

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