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A mechanistic study on the activation process of (La, Sr)MnO3 electrodes of solid oxide fuel cells

机译:固体氧化物燃料电池(La,Sr)MnO3电极活化过程的机理研究

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摘要

The mechanism of the activation process for the O-2 reduction on (La0.8Sr0.2)(0.9)MnO3 (LSM) electrodes is investigated by examining the electrochemical behavior of LSM under cathodic and anodic polarization conditions and the relaxation behavior of LSM under open circuit. A comparative study is also performed on a LSM electrode after dilute acid etching treatment. It has been shown that the segregated SrO has a significant inhibiting effect on the surface exchange process such as dissociative adsorption, incorporation and diffusion of oxygen species on the LSM surface, resulting in the initially very high impedance for the O-2 reduction on LSM electrodes. A mechanism involving the incorporation of SrO into LSM lattice with the concomitant removal of cation vacancies is proposed for the activation effect of cathodic current passage/polarization in solid oxide fuel cells. (c) 2006 Elsevier B.V All rights reserved.
机译:通过研究LSM在阴极和阳极极化条件下的电化学行为以及LSM在(La0.8Sr0.2)(0.9)MnO3(LSM)电极上的O-2还原活化过程的机理开路。在稀酸蚀刻处理后,还在LSM电极上进行了比较研究。业已表明,偏析的SrO对表面交换过程具有显着的抑制作用,例如在LSM表面上的解离吸附,氧分子的结合和扩散,从而导致LSM电极上最初的O-2还原具有很高的阻抗。 。针对固体氧化物燃料电池中阴极电流通过/极化的激活效应,提出了一种将SrO掺入LSM晶格并伴随去除阳离子空位的机制。 (c)2006 Elsevier B.V保留所有权利。

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