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La2NiO4+delta infiltrated into gadolinium doped ceria as novel solid oxide fuel cell cathodes: Electrochemical performance and impedance modelling

机译:La2NiO4 +δ渗入掺do的二氧化铈中作为新型固体氧化物燃料电池阴极:电化学性能和阻抗模型

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This paper is devoted to the study of composite cathodes of La2NiO4+delta infiltrated into a Gd-doped ceria backbone. Porous Gd-doped ceria backbones are screen printed onto yttria-stabilized zirconia or Gd-doped ceria dense electrolytes, and infiltrated with a La and Ni nitrate solution (2:1 stoichiometry ratio). The influence of the preparation parameters on the polarization resistance, such as the concentration of the infiltration solution, the amount of infiltrated phase, the annealing temperature, the thickness of the electrode, and the nature of the electrolyte, is characterized by impedance spectroscopy performed on symmetrical cells. The optimization of these parameters results in a decrease of the polarization resistance down to 0.15 Omega cm(2) at 600 degrees C. Using the Adler-Lane-Steele model, the modelling of the impedance diagrams leads to the determination of the ionic conductivity as well as the surface exchange rate of the infiltrated electrode. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文致力于渗入掺Gd的二氧化铈骨架的La2NiO4 +δ复合阴极的研究。将多孔的掺Gd的二氧化铈骨架丝网印刷到氧化钇稳定的氧化锆或掺Gd的二氧化铈致密电解质上,并用La和Ni硝酸盐溶液(化学计量比为2:1)渗透。制备参数对极化电阻的影响,例如渗透溶液的浓度,渗透相的量,退火温度,电极的厚度和电解质的性质,是通过在电极上进行的阻抗谱来表征的。对称细胞。这些参数的优化导致在600摄氏度下极化电阻降低到0.15 Omega cm(2)。使用Adler-Lane-Steele模型,阻抗图的建模导致确定离子电导率以及渗透电极的表面交换速率。 (C)2015 Elsevier B.V.保留所有权利。

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