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Molybdate Based Ceramic Negative-Electrode Materials for Solid Oxide Cells

机译:用于固体氧化物电池的钼酸盐基陶瓷负极材料

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摘要

Novel molybdate materials with varying Mo valence were synthesized as possible negative-electrode materials for solid oxide cells. The phase, stability, microstructure and electrical conductivity were characterized. The electrochemical activity for H2O and CO2 reduction and H2 and CO oxidation was studied using simplified geometry point-contact electrodes. Unique phenomena were observed for some of the materials - they decomposed into multiple phases and formed a nanostructured surface upon exposure to operating conditions (in certain reducing atmospheres). The new phases and surface features enhanced the electrocatalytic activity and electronic conductivity. The polarization resistances of the best molybdates were two orders of magnitude lower than that of donor-doped strontium titanates. Many of the molybdate materials were significantly activated by cathodic polarization, and they exhibited higher performance for cathodic (electrolysis) polarization than for anodic (fuel cell) polarization, which makes them especially interesting for use in electrolysis electrodes. ©2010 COPYRIGHT ECS - The Electrochemical Society
机译:合成了具有不同钼价的新型钼酸盐材料,将其作为固体氧化物电池的负极材料。表征了相,稳定性,微结构和电导率。使用简化的几何点接触电极研究了H2O和CO2还原以及H2和CO氧化的电化学活性。对于某些材料,观察到了独特的现象-它们在暴露于操作条件(在某些还原性气氛中)时分解成多相并形成了纳米结构的表面。新的相和表面特征增强了电催化活性和电子传导性。最好的钼酸盐的极化电阻比施主掺杂钛酸锶的极化电阻低两个数量级。许多钼酸盐材料被阴极极化显着活化,与阳极(燃料电池)极化相比,它们在阴极(电解)极化方面表现出更高的性能,这使它们特别适用于电解电极。 ©2010版权ECS-电化学学会

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