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Overstoichiometric oxides Ln(2)NiO(4+delta) (Ln = La, Pr or Nd) as oxygen anodic electrodes for solid oxide electrolysis application

机译:超化学计量氧化物Ln(2)NiO(4 + delta)(Ln = La,Pr或Nd)作为用于固体氧化物电解应用的氧阳极电极

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Improving the oxygen electrode performances of the single solid oxide electrolysis cell (SOEC) is of peculiar interest as it contributes to a large extent to the cell polarization resistance. The present study focuses on alternative oxygen electrode materials: the oxygen overstoichiometric rare-earth nickelate oxides Ln(2)NiO(4+delta) (Ln = La, Pr or Nd). Their electrochemical properties are measured on three-electrode symmetrical half-cells under zero dc conditions and under anodic polarization. The electrochemical characteristics are compared to those of the usual perovskite La0.6Sr0.4Fe0.8Co0.2O3-delta (LSFC) electrode. Under polarization, in the temperature range from 600 degrees C to 800 degrees C, the Pr2NiO4+delta-based cells exhibit the highest performances. At the same anodic overpotential of 0.15 V/Pt/air, the current densities measured through Pr2NiO4+delta nickelate-based cells are more than ten times larger than those obtained with a cell based on LSCF. The modeling of the anodic overpotential phenomena (activation and concentration terms) occurring at the oxygen electrode is achieved and discussed. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:改善单个固体氧化物电解槽(SOEC)的氧电极性能具有特殊意义,因为它在很大程度上有助于提高电池的极化电阻。本研究的重点是替代性的氧电极材料:氧化学计量过量的稀土氧化镍Ln(2)NiO(4 + delta)(Ln = La,Pr或Nd)。在零直流条件和阳极极化条件下,在三电极对称半电池上测量了它们的电化学性能。将电化学特性与普通钙钛矿型La0.6Sr0.4Fe0.8Co0.2O3-δ(LSFC)电极的电化学特性进行了比较。在极化下,在从600摄氏度到800摄氏度的温度范围内,Pr2NiO4 +δ基电池表现出最高的性能。在0.15 V / Pt /空气的相同阳极过电势下,通过Pr2NiO4 +镍酸δ电池测得的电流密度比基于LSCF的电池测得的电流密度大十倍以上。实现并讨论了在氧电极上发生的阳极超电势现象(活化和浓度项)的建模。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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