钒氧化还原电池的最新研究:关于电解质制备、传质和电荷转移以提高电解质性能的综述

Energy Storage Pub Date : 2024-03-25 DOI:10.1002/est2.610
Man Ye, Ni Zhang, Tuankun Zhou, Zeng Wei, Fei Jiang, Yan Ke
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引用次数: 0

摘要

钒电解液是钒氧化还原电池(VRB)最关键的材料之一。降低钒电解液的成本并提高其性能是钒氧化还原电池研究的重点。目前,钒电解液成本的控制主要依赖于新工艺的开发和传统工艺的优化。提高电解质的性能主要涉及传质和传荷两个方面,如引入添加剂、优化支撑电解质、开发新的电极催化剂等。本文回顾了过去 10 年在改善 VRB 性能方面取得的进展。文章主要关注三个方面:电解质的制备、传质对电池性能的影响以及电荷转移对电池性能的影响。报告还进一步讨论了不同因素对提高 VRB 性能的影响。最后,它总结了 VRB 在性能改进和商业应用方面所面临的挑战,并对 VRB 未来的研究和发展提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent research on vanadium redox batteries: A review on electrolyte preparation, mass transfer, and charge transfer for electrolyte performance enhancement

Vanadium electrolyte is one of the most critical materials for vanadium redox batteries (VRB). Reducing the cost of vanadium electrolyte and improving its performance are ongoing research priorities for VRB. Currently, the control of the cost of vanadium electrolyte mainly relies on the development of new processes and optimization of traditional processes. Improving the performance of electrolytes mainly involves two aspects: mass transfer and charge transfer, such as introducing additives, optimizing supporting electrolytes, and developing new electrode catalysts. This article reviews the progress in improving the performance of VRB in the past 10 years. It focuses on three main aspects: the preparation of electrolytes, the influence of mass transfer on battery performance, and the influence of charge transfer on battery performance. It also further discusses the impact of different factors on the improvement of VRB performance. Finally, it summarizes the challenges faced by VRB in performance improvement and commercial applications, and made suggestions for future research and development of VRB.

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