固体氧化物电池的三电极结构综述

Jing Zhu , Bin Chen , Meng Ni , Haoran Xu
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引用次数: 0

摘要

参考电极(RE)是隔离单个电极电位的关键工具,可以表征阳极和阴极性能,并实现对电池电极条件的实时监测。然而,由于固体氧化物电池的高工作温度和全固态结构,将包括RE在内的三电极结构集成到固体氧化物电池中存在挑战。因此,本文回顾了固体氧化物电池表征的三电极结构。首先介绍了极化原理和电化学阻抗谱(EIS)在三电极实验中的测量,为电池结构设计和实验设置提供指导。讨论了稀土材料的性质、尺寸和周围气氛对电位精度的影响。此外,还分析了RE的位置,电池结构以及在电解质支持和电极支持电池中的应用。提出了验证实验数据的方法和提高可靠性的策略。最后,对三电极结构的进一步研究和发展进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A mini-review on three-electrode configuration for Solid Oxide Cells
The reference electrode (RE) is a crucial tool for isolating the potential of individual electrodes, allowing for the characterization of anode and cathode performance and enabling real-time monitoring of cell electrode conditions. However, integrating a three-electrode configuration, which includes an RE, into solid oxide cells presents challenges due to their high operating temperature and all-solid-state structure. Thus, this paper reviews the three-electrode configuration for solid oxide cell characterization. It starts with an introduction to the principles of polarization and electrochemical impedance spectroscopy (EIS) measurements in three-electrode experiments, providing guidance for cell structure design and experiment set. The impacts of RE material properties, size and surrounding atmosphere on potential accuracy are discussed. Additionally, the positions of RE, cell structures, and applications in both electrolyte-supported and electrode-supported cells are analyzed. Methods for validating experimental data and strategies to enhance reliability are also presented. Finally, this paper outlines prospects for further research and development in three-electrode configurations.
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CiteScore
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