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The roles of ionic liquids as new electrolytes in redox flow batteries

机译:离子液体作为氧化还原电池中的新电解质的作用

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摘要

Redox flow batteries (RFBs) have emerged as a prominent option for the storage of intermittent renewable energy in large and medium-scale applications. In comparison to conventional batteries, these systems offer the unique advantage of decoupling energy and power densities, which can be separately scaled. Flowing liquid electrolytes, stored in external adjacent tanks to the cell stack, allow the reversible conversion of chemical energy into electricity by exploiting the difference in oxidation states between electroactive species. RFBs are at an early stage of commercialization, but the energy density is still low for the widespread use and full im-plementation. The attractive physicochemical properties of ionic liquids (ILs), with adventurous electrochemical features over aqueous and organic electrolytes, have drawn growing interest for their use in energy devices. Due to their versatility, ILs can be applied in the main components of RFBs, showing great potential for the further development of the technology. For the first time, this work reviews the recent progress on the application of IL materials in RFBs, discussing their roles as i) supportive electrolytes and additives, ii) redox reaction media, iii) redox-active species and iv) electrolyte membranes. The advantages and limitations of the multiple function-alities of ILs in RFBs are detailed, underlining the promising prospects and future research trends in the field.
机译:氧化还原流量电池(RFBs)已成为在大中型应用中储存间歇可再生能源的突出选择。与传统电池相比,这些系统提供了解耦能量和功率密度的独特优势,可以单独缩放。流动的液体电解质,储存在外部相邻罐中到电池堆,通过利用电活性物种之间的氧化状态差异来使化学能量可逆转化为电力。 RFBS在商业化的早期阶段,但广泛使用和完全电压的能量密度仍然很低。在水性和有机电解质上具有冒险电化学特征的离子液体(ILS)的有吸引力的物理化学性质,对其在能量装置中使用的兴趣增长。由于它们的多功能性,ILS可以应用于RFB的主要组成部分,表现出技术进一步发展的潜力。这项工作首次审查了RFB中IL材料在RFB中施加的最新进展,讨论了它们的统一性支持电解质和添加剂,II)氧化还原反应介质,III)氧化还原活性物种和IV)电解质膜。详细说明了RFBS在RFBS中的多种功能 - 各种功能的优点和局限性,强调了该领域的有希望和未来的研究趋势。

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