A Review of Electrochemical Cells with Geometrically Well-defined Interfaces for Solid Oxide Fuel Cell Anodes

Yoonseok Choi
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Abstract

A solid oxide fuel cell (SOFC) is a high-temperature (above 750℃) energy conversion device that generates electricity with high efficiency and low CO2 emission. It is essential to develop high-activity electrodes for its commercialization by lowering the operating temperature to below 700℃. Understanding the electrode reaction kinetics can provide fundamental insights for the rational design of high-performance electrodes. However, the three-dimensional porous microstructures of the SOFC electrodes make it difficult to analyze the reaction processes precisely. To overcome this issue associated with the conventional electrodes, the model electrodes with geometrically well-defined interfaces have been widely employed. In this paper, focusing on the SOFC anodes, the fabrication techniques, cell types, analysis tools, and the modeling studies in the literature will be reviewed.
固体氧化物燃料电池阳极具有几何定义界面的电化学电池研究进展
固体氧化物燃料电池(SOFC)是一种高温(750℃以上)能量转换装置,其发电效率高,二氧化碳排放量低。将工作温度降低到700℃以下是实现高活性电极商业化的关键。了解电极反应动力学可以为高性能电极的合理设计提供基础见解。然而,SOFC电极的三维多孔微观结构给反应过程的精确分析带来了困难。为了克服传统电极的这一问题,具有几何定义良好界面的模型电极被广泛应用。本文将对SOFC阳极的制造技术、电池类型、分析工具和文献中的建模研究进行综述。
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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