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使用X射线计算机断层扫描和基于贝叶斯模型的分析对多孔LSM电极上的阻抗谱数据进行定量解释。

Quantitative interpretation of impedance spectroscopy data on porous LSM electrodes using X-ray computed tomography and Bayesian model-based analysis.

作者信息

Brunello Giuseppe F, Epting William K, de Silva Juwana, Salvador Paul A, Litster Shawn, Finklea Harry O, Lee Yueh-Lin, Gerdes Kirk R, Mebane David S

机构信息

Department of Mechanical and Aerospace Engineering, West Virginia University, Morgantown, West Virginia 26506, USA.

出版信息

Phys Chem Chem Phys. 2017 Sep 27;19(37):25334-25345. doi: 10.1039/c7cp04533f.

Abstract

It is broadly understood that strontium-doped lanthanum manganate (LSM) cathodes for solid oxide fuel cells (SOFCs) have two pathways for the reduction of oxygen: a surface-mediated pathway culminating in oxygen incorporation into the electrolyte at the triple-phase boundary (TPB), and a bulk-mediated pathway involving oxygen transfer across the electrode-electrolyte interface. Patterned electrode and thin film experiments have shown that both pathways are active in LSM. Porous electrode geometries more commonly found in SOFCs have not been amenable for precise measurement of active electrode width because of the difficulty in precisely measuring the electrode geometry. This study quantitatively compares a reaction-diffusion model for the oxygen reduction reaction in LSM to the impedance spectrum of an experimental LSM porous electrode symmetric button cell on a yttria-stabilized zirconia (YSZ) electrolyte. The porous microstructure was characterized using computed tomography (nano-CT) and Bayesian model-based analysis (BMA) was used to estimate model parameters. BMA produced good fits to the data, with higher than expected values for the interfacial capacitance at the LSM-YSZ interface and vacancy diffusion activation energy; these results may indicate that the active width of the electrode is on a similar scale with that of the space-charge width at the LSM-YSZ interface. The analysis also showed that the active width and proportion of current moving through the bulk pathway is temperature dependent, in accordance with patterned electrode results.

摘要

人们普遍认为,用于固体氧化物燃料电池(SOFC)的锶掺杂锰酸镧(LSM)阴极存在两条氧还原途径:一条是表面介导途径,最终导致氧在三相边界(TPB)处掺入电解质中;另一条是体相介导途径,涉及氧穿过电极-电解质界面的转移。图案化电极和薄膜实验表明,这两条途径在LSM中均起作用。由于难以精确测量电极几何形状,在SOFC中更常见的多孔电极几何形状并不适合精确测量活性电极宽度。本研究将LSM中氧还原反应的反应扩散模型与基于氧化钇稳定氧化锆(YSZ)电解质的实验LSM多孔电极对称纽扣电池的阻抗谱进行了定量比较。使用计算机断层扫描(nano-CT)对多孔微观结构进行了表征,并使用基于贝叶斯模型的分析(BMA)来估计模型参数。BMA对数据拟合良好,LSM-YSZ界面处的界面电容和空位扩散活化能高于预期值;这些结果可能表明电极的活性宽度与LSM-YSZ界面处的空间电荷宽度处于相似的尺度。分析还表明,活性宽度和通过体相途径的电流比例与温度有关,这与图案化电极的结果一致。

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