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Cathode materials for halide-based aqueous redox flow batteries: recent progress and future perspectives

机译:卤化物基水系氧化还原液流电池正极材料研究进展与展望

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摘要

As the population increases sharply around the globe, huge shortages are occurring in energy resources. Renewable resources are urgently required to be developed to satisfy human demands. Unlike the lithium-ion batteries with safety and cost issues, the redox flow battery (RFB) is economical, stable, and convenient for the development of large-scale stationary electrical energy storage applications. Especially, the aqueous redox flow battery (ARFB) further exhibits a promising potential in larger power grids owing to its unique structural features of storing energy by filling the tank with electrolytes. The ARFB is capable of modulating battery parameters by controlling the volume and concentration of the electro-active species (EAS). Further, halogens show excellent properties, such as low cost and appropriate potential as an EAS for ARFB, further showing an efficient, safe, and affordable energy storage system (ESS). Moreover, to attain the demands of strong activity, high sensitivity, convenience as well as practicality, further attention needs to be paid to material (electrode) design and adjustment. In this mini-review, novel electrode materials, including their potential internal mechanisms and effective regulatory means, are summarized and applied in the zinc-halogen, hydrogen-halogen, and polysulfide-halogen ARFB systems, promoting the development of valuable material systems and the innovation of the energy storage/conversion technologies.
机译:随着人口的急剧增加的全球,巨大的能量短缺发生资源。需要开发以满足人类的要求。安全性和成本问题,氧化还原流体电池(RFB)是经济、稳定和方便大型固定的发展电能存储应用程序。尤其是溶液氧化还原流体电池(ARFB)进一步展品有潜力更大电网由于其独特的结构填充水箱储存能量的特性电解质。通过控制调节电池参数electro-active的体积和浓度物种(EAS)。属性,如低成本和适当的潜在的作为ARFB东亚峰会,进一步显示出高效,安全,和负担得起的能源存储系统(ESS)。活动强、灵敏度高、方便实用性,需要进一步关注材料(电极)设计和支付调整。材料,包括潜在的内部机制和有效的监管手段,zinc-halogen总结和应用,hydrogen-halogen, polysulfide-halogen ARFB系统,促进价值的发展物质系统和创新的能量存储/转换技术。

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