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In situ assembled La0.8Sr0.2MnO3 cathodes on a Y2O3-ZrO2 electrolyte of solid oxide fuel cells - interface and electrochemical activity

机译:固体氧化物燃料电池Y2O3-ZrO2电解质上原位组装的La0.8Sr0.2MnO3阴极-界面和电化学活性

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摘要

Formation of an intimate electrode/electrolyte interface is essential for solid oxide fuel cells (SOFCs). In this study, a comparative investigation has been undertaken to study the interface formation between a La0.8Sr0.2MnO3 (LSM) cathode and Y2O3-ZrO2 (YSZ) electrolyte by high temperature sintering and by cathodic polarization using EIS, SEM, AFM and HAADF-STEM techniques. The electrode/electrolyte interface formed by the conventional pre-sintering process is characterized by the formation of distinctive convex contact rings on the YSZ surface and such convex contact rings are due to the cation interdiffusion such as manganese species between LSM and YSZ. Similar to the thermally induced interface, the electrode/electrolyte interface can also be formed by electrochemical polarization for the in situ assembled LSM cathode on YSZ as well as on Gd2O3-CeO2 (GDC) electrolytes without pre-sintering at high temperatures. The polarization induced interface has smaller contact marks due to the much finer grain size of the as-prepared LSM electrodes. Detailed electrochemical impedance studies indicate that both thermally and polarization induced LSM/YSZ interfaces show comparable electrocatalytic activity and behaviour for the oxygen reduction reaction with similar activation energies. The present study clearly demonstrates the formation of effective electrode/electrolyte interfaces in SOFCs under the influence of cathodic polarization without high temperature sintering steps.
机译:紧密的电极/电解质界面的形成对于固体氧化物燃料电池(SOFC)至关重要。在这项研究中,已进行了比较研究,以研究通过高温烧结和EIS,SEM,AFM和HAADF的阴极极化,在La0.8Sr0.2MnO3(LSM)阴极和Y2O3-ZrO2(YSZ)电解质之间形成界面-STEM技术。通过常规预烧结工艺形成的电极/电解质界面的特征在于在YSZ表面上形成独特的凸接触环,并且这种凸接触环是由于阳离子相互扩散,例如在LSM和YSZ之间的锰物种。类似于热感应界面,也可以通过电化学极化在YSZ以及Gd2O3-CeO2(GDC)电解质上就地组装的LSM阴极进行电化学极化而无需在高温下进行预烧结来形成电极/电解质界面。极化引起的界面具有较小的接触痕迹,这是由于所制备的LSM电极的晶粒尺寸要小得多。详细的电化学阻抗研究表明,热诱导和极化诱导的LSM / YSZ界面对于具有相似活化能的氧还原反应均显示出可比的电催化活性和行为。本研究清楚地证明了在没有高温烧结步骤的情况下,在阴极极化的影响下,SOFC中有效电极/电解质界面的形成。

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