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Redox‐Flow Batteries: From Metals to Organic Redox‐Active Materials

机译:氧化还原液流电池:从金属到有机氧化还原活性物质

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摘要

Research on redox‐flow batteries (RFBs) is currently experiencing a significant upturn, stimulated by the growing need to store increasing quantities of sustainably generated electrical energy. RFBs are promising candidates for the creation of smart grids, particularly when combined with photovoltaics and wind farms. To achieve the goal of “green”, safe, and cost‐efficient energy storage, research has shifted from metal‐based materials to organic active materials in recent years. This Review presents an overview of various flow‐battery systems. Relevant studies concerning their history are discussed as well as their development over the last few years from the classical inorganic, to organic/inorganic, to RFBs with organic redox‐active cathode and anode materials. Available technologies are analyzed in terms of their technical, economic, and environmental aspects; the advantages and limitations of these systems are also discussed. Further technological challenges and prospective research possibilities are highlighted.
机译:由于对存储越来越多的可持续产生的电能的需求不断增长,目前对氧化还原液流电池(RFB)的研究正经历着重大的增长。 RFB是创建智能电网的有希望的候选者,特别是与光伏发电和风电场结合使用时。为了实现“绿色”,安全且经济高效的储能目标,近年来研究已从金属材料转移到有机活性材料。本评论概述了各种液流电池系统。讨论了有关其历史的研究及其在过去几年中的发展,从经典的无机材料到有机/无机材料,再到具有有机氧化还原活性阴极和阳极材料的RFB。现有技术从技术,经济和环境方面进行了分析;还讨论了这些系统的优点和局限性。突出了进一步的技术挑战和前瞻性研究的可能性。

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