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Modeling the impedance response of mixed-conducting thin film electrodes

机译:混合导电薄膜电极的阻抗响应建模

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In this paper a novel numerical impedance model is developed for mixed-conducting thin films working as electrodes for solid oxide fuel cells. The relative importance of interfaces is considered by incorporating double layer contributions at the film/gas boundary. Simulations are performed on a model system, namely doped ceria, in a symmetric cell configuration using geometrically well-defined patterned metal current collectors. Results reveal that experimentally consistent bulk impedances and surface capacitances can be extracted using the model. The impedance response depends strongly on the pattern spacing of the current collector, and is attributed to the electronic in-plane drift-diffusion as well as to the interplay between the surface reaction resistance and the electronic/ionic bulk drift-diffusion resistance.
机译:在本文中,针对用作固体氧化物燃料电池电极的混合导电薄膜,开发了一种新型的数值阻抗模型。通过在薄膜/气体边界处加入双层贡献来考虑界面的相对重要性。使用几何定义明确的图案化金属集电器,在对称电池配置中的模型系统(即掺杂的氧化铈)上进行仿真。结果表明,可以使用该模型提取实验上一致的体阻抗和表面电容。阻抗响应在很大程度上取决于集电器的图案间距,并且归因于电子面内漂移-扩散以及表面反应电阻与电子/离子本体漂移-扩散电阻之间的相互作用。

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