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Estimation of current constriction losses via 3D tomography reconstructions in electrochemical devices: a case study of a solid oxide cell electrode/electrolyte interface

机译:通过电化学装置中的3D断层摄影重建估计电流收缩损失:固体氧化物电池电极/电解质界面的案例研究

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摘要

In the present study, the methodology for accurate estimations of the current constriction resistance in solid state electrochemical devices via 3D tomography reconstructions is developed. The methodology is used to determine the current constriction resistances at the Ni:YSZ anode/YSZ electrolyte interface of a solid oxide fuel cell. The current constriction at this interface becomes increasingly important as thinner electrolyte layers are continuously being pursued for increased performance. Various possible scenarios have been illustrated on idealized geometries as a function of electrolyte thicknesses, from which it is clear, that for a given set of electrodes an optimal electrolyte thickness exist. Thus, increased performance by reduction of the electrolyte thickness is only feasible down to a certain thickness, after which, a lower performance is obtained on a further reduction of the electrolyte thickness. The obtained results on current constriction resistances from numerical calculations on a 3D reconstruction of a Ni:YSZ anode/YSZ electrolyte assembly is compared with existing models with analytical expressions. The comparison shows, that the assumptions of existing models are by far too simple and the models are therefore not applicable for technological relevant electrochemical devices.
机译:在本研究中,开发了通过3D层析成像重建技术准确估算固态电化学装置中电流压缩电阻的方法。该方法用于确定固体氧化物燃料电池的Ni:YSZ阳极/ YSZ电解质界面处的电流压缩电阻。随着不断追求更薄的电解质层以提高性能,该界面处的电流收缩变得越来越重要。在理想化的几何形状上已经示出了各种可能的方案,它们是电解质厚度的函数,从中可以明显看出,对于给定的一组电极,存在最佳的电解质厚度。因此,通过减小电解质厚度来提高性能仅是可行的,直到减小到一定厚度,之后,在进一步减小电解质厚度时获得较低的性能。通过对Ni:YSZ阳极/ YSZ电解质组件的3D重构的数值计算获得的关于电流压缩电阻的结果与具有解析表达式的现有模型进行了比较。比较表明,现有模型的假设过于简单,因此该模型不适用于与技术相关的电化学装置。

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