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POLYARENE MEDIATORS FOR MEDIATED REDOX FLOW BATTERY

机译:介电质氧化还原流动电池用聚乙烯介体

摘要

The fundamental charge storage mechanisms in a number of currently studied high energy redox couples are based on intercalation, conversion, or displacement reactions. With exception to certain metal-air chemistries, most often the active redox materials are stored physically in the electrochemical cell stack thereby lowering the practical gravimetric and volumetric energy density as a tradeoff to achieve reasonable power density. In a general embodiment, a mediated redox flow battery includes a series of secondary organic molecules that form highly reduced anionic radicals as reaction mediator pairs for the reduction and oxidation of primary high capacity redox species ex situ from the electrochemical cell stack. Arenes are reduced to stable anionic radicals that in turn reduce a primary anode to the charged state. The primary anode is then discharged using a second lower potential (more positive) arene. Compatible separators and solvents are also disclosed herein.
机译:许多当前研究的高能氧化还原对中的基本电荷存储机制是基于嵌入,转化或置换反应的。除某些金属-空气化学性质外,最常见的是将活性氧化还原材料物理存储在电化学电池堆中,从而降低了实际的重量和体积能量密度,以取得合理的功率密度。在一般的实施方式中,介导的氧化还原液流电池包括一系列次级有机分子,其形成高度还原的阴离子自由基作为反应介质对,用于从电化学电池堆异位还原和氧化主要的高容量氧化还原物质。芳烃被还原为稳定的阴离子基团,进而将主阳极还原为带电状态。然后,使用第二个较低电势(更正)的芳烃放电一次阳极。本文还公开了相容的隔板和溶剂。

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