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关于改性碳毡用作钒氧化还原液流电池电极的见解

Insights into the Modification of Carbonous Felt as an Electrode for Vanadium Redox Flow Batteries.

作者信息

Ding Cong, Shen Zhefei, Zhu Ying, Cheng Yuanhui

机构信息

College of Science, Huazhong Agricultural University, Wuhan 430070, China.

State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Materials (Basel). 2023 May 18;16(10):3811. doi: 10.3390/ma16103811.

Abstract

The vanadium redox flow battery (VRFB) has been regarded as one of the best potential stationary electrochemical storage systems for its design flexibility, long cycle life, high efficiency, and high safety; it is usually utilized to resolve the fluctuations and intermittent nature of renewable energy sources. As one of the critical components of VRFBs to provide the reaction sites for redox couples, an ideal electrode should possess excellent chemical and electrochemical stability, conductivity, and a low price, as well as good reaction kinetics, hydrophilicity, and electrochemical activity, in order to satisfy the requirements for high-performance VRFBs. However, the most commonly used electrode material, a carbonous felt electrode, such as graphite felt (GF) or carbon felt (CF), suffers from relatively inferior kinetic reversibility and poor catalytic activity toward the V/V and VO/VO redox couples, limiting the operation of VRFBs at low current density. Therefore, modified carbon substrates have been extensively investigated to improve vanadium redox reactions. Here, we give a brief review of recent progress in the modification methods of carbonous felt electrodes, such as surface treatment, the deposition of low-cost metal oxides, the doping of nonmetal elements, and complexation with nanostructured carbon materials. Thus, we give new insights into the relationships between the structure and the electrochemical performance, and provide some perspectives for the future development of VRFBs. Through a comprehensive analysis, it is found that the increase in the surface area and active sites are two decisive factors that enhance the performance of carbonous felt electrodes. Based on the varied structural and electrochemical characterizations, the relationship between the surface nature and electrochemical activity, as well as the mechanism of the modified carbon felt electrodes, is also discussed.

摘要

钒氧化还原液流电池(VRFB)因其设计灵活性、长循环寿命、高效率和高安全性,被视为最具潜力的固定式电化学储能系统之一;它通常用于解决可再生能源的波动和间歇性问题。作为VRFB中为氧化还原对提供反应位点的关键组件之一,理想的电极应具备优异的化学和电化学稳定性、导电性、低价格,以及良好的反应动力学、亲水性和电化学活性,以满足高性能VRFB的要求。然而,最常用的电极材料,如石墨毡(GF)或碳毡(CF)等含碳毡电极,其动力学可逆性相对较差,对V/V和VO/VO氧化还原对的催化活性也较差,限制了VRFB在低电流密度下的运行。因此,人们对改性碳基底进行了广泛研究,以改善钒氧化还原反应。在此,我们简要综述了含碳毡电极改性方法的最新进展,如表面处理、低成本金属氧化物的沉积、非金属元素的掺杂以及与纳米结构碳材料的复合。因此,我们对结构与电化学性能之间的关系有了新的认识,并为VRFB的未来发展提供了一些展望。通过综合分析发现,表面积和活性位点的增加是提高含碳毡电极性能的两个决定性因素。基于各种结构和电化学表征,还讨论了表面性质与电化学活性之间的关系以及改性碳毡电极的作用机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b34/10223134/c332c668a9c3/materials-16-03811-g001.jpg

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