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首页> 外文期刊>Journal of power sources >Compositional Influence Of Lsm-ysz Composite Cathodes On Improved Performance And Durability Of Solid Oxide Fuel Cells
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Compositional Influence Of Lsm-ysz Composite Cathodes On Improved Performance And Durability Of Solid Oxide Fuel Cells

机译:Lsm-ysz复合阴极的组成对改进固体氧化物燃料电池性能和耐久性的影响

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The use of a dual-composite approach, in which both LSM and YSZ nanoparticles are placed on YSZ core particles, allows for the development of an ideal cathode microstructure with improved phase contiguity and durability for use in solid oxide fuel cells. The volume fraction of the conjugated YSZ phase plays a critical role in the optimization of the cathode microstructure for achieving good durability because it acts as an interconnecting bridge between YSZ core particles. However, the presence of excess conjugated YSZ phase interrupts the formation of sufficient triple phase boundary sites by disturbing the contacts between the LSM and YSZ phases. Impedance spectroscopy analysis and microstructural observations provide a better understanding of the influence of the composition on the electrochemical performance and durability of these dual composite cathodes.
机译:将LSM和YSZ纳米粒子都放置在YSZ核心粒子上的双复合方法的使用,可以开发出理想的阴极微结构,具有改善的相连续性和耐用性,可用于固体氧化物燃料电池。共轭YSZ相的体积分数在优化阴极微观结构以实现良好耐久性方面起着关键作用,因为它充当了YSZ核心颗粒之间的互连桥。但是,过量的共轭YSZ相的存在会干扰LSM和YSZ相之间的接触,从而中断足够的三相边界位的形成。阻抗谱分析和微结构观察可更好地理解组成对这些双复合阴极的电化学性能和耐久性的影响。

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