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Recent Developments in Organic Redox Flow Batteries: A Critical Review

机译:有机氧化还原液流电池的最新进展:综述。

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摘要

Redox flow batteries (RFBs) have emerged as prime candidates for energy storage on the medium and large scales, particularly at the grid scale. The demand for versatile energy storage continues to increase as more electrical energy is generated from intermittent renewable sources. A major barrier in the way of broad deployment and deep market penetration is the use of expensive metals as the active species in the electrolytes. The use of organic redox couples in aqueous or non-aqueous electrolytes is a promising approach to reducing the overall cost in long-term, since these materials can be low-cost and abundant. The performance of such redox couples can be tuned by modifying their chemical structure. In recent years, significant developments in organic redox flow batteries has taken place, with the introduction of new groups of highly soluble organic molecules, capable of providing a cell voltage and charge capacity comparable to conventional metal-based systems. This review summarises the fundamental developments and characterization of organic redox flow batteries from both the chemistry and materials perspectives. The latest advances, future challenges and opportunities for further development are discussed.
机译:氧化还原液流电池(RFB)已成为中大型,特别是电网规模的能量存储的主要候选产品。随着间歇性可再生资源产生更多的电能,对多功能储能的需求持续增长。广泛部署和深入市场渗透的主要障碍是使用昂贵的金属作为电解质中的活性物质。在水或非水电解质中使用有机氧化还原对是长期降低总成本的一种有前途的方法,因为这些材料可以低成本且丰富。可以通过改变它们的化学结构来调节这种氧化还原对的性能。近年来,随着新的高可溶性有机分子的引入,有机氧化还原液流电池取得了重大进展,能够提供与传统的基于金属的系统相当的电池电压和充电容量。这篇综述从化学和材料的角度总结了有机氧化还原液流电池的基本发展和特征。讨论了最新进展,未来挑战和进一步发展的机会。

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