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Issues on development of (La,Sr)MnO_3 cathode for solid oxide fuel cells

机译:固体氧化物燃料电池用(La,Sr)MnO_3阴极的开发问题

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Development of high-performance electrode materials is critical to the commercial realization of solid oxide fuel-cell (SOFC) technology. The material development process is, however, very complex and requires understanding of the fundamental issues of the materials and the electrochemistry that is involved. An interesting example is the (La,Sr)MnO_3 (LSM) cathode material. This paper discusses some important issues in the development and optimization of LSM cathode materials for SOFCs. The relationship between the microstructure, interfacial properties and the electrochemical behaviour of the cathode material is not a static one. Rather, it changes and evolves constantly under fuel-cell operation conditions. Such dynamic relationship between the properties and the electrochemical behaviour is important for the fundamental understanding of the mechanism and kinetics of the oxygen reduction at LSM cathodes, and for the development of high-performance cathodes for SOFCs that operate at intermediate temperatures (600-800℃).
机译:高性能电极材料的开发对于固体氧化物燃料电池(SOFC)技术的商业实现至关重要。但是,材料开发过程非常复杂,需要了解材料的基本问题以及所涉及的电化学。一个有趣的例子是(La,Sr)MnO_3(LSM)阴极材料。本文讨论了用于SOFC的LSM阴极材料的开发和优化中的一些重要问题。阴极材料的微观结构,界面性质和电化学行为之间的关系不是静态的。相反,它在燃料电池运行条件下不断变化和发展。这些性质与电化学行为之间的动态关系对于基本了解LSM阴极上氧气还原的机理和动力学以及开发用于在中等温度(600-800℃)下工作的SOFC的高性能阴极非常重要。 )。

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