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Controllable Impregnation Via Inkjet Printing for the Fabrication of Solid Oxide Cell Air Electrodes

机译:通过喷墨印刷可控浸渍以制造固体氧化物电池空气电极

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摘要

The impregnation method has been considered as one of the most successful techniques for the fabrication of highly efficient electrodes for solid oxide fuel and electrolysis cells (SOCs) at the lab scale. However, because the impregnation is usually performed manually, its irreproducibility remains a major problem that can be solved by using controllable techniques, such as inkjet printing. In this paper, lanthanum strontium manganite (LSM)/yttria stabilized zirconia (YSZ) air electrodes were prepared by infiltrating YSZ porous bodies with LSM precursor solution using inkjet printing, followed by annealing at 800°C for 2 hours. XRD analysis confirmed the formation of the LSM phase, which was in the form of nanoparticles with size in the 50-70 nm range on the YSZ walls, as revealed by FEG-SEM observations. The effect of printing parameters on the distribution of the impregnated phase was investigated and discussed.
机译:浸渍法已被认为是在实验室规模上制造用于固体氧化物燃料和电解槽(SOC)的高效电极的最成功技术之一。但是,由于浸渍通常是手动进行的,因此其不可再现性仍然是可以通过使用可控技术例如喷墨印刷来解决的主要问题。在本文中,通过用喷墨印刷将LSM前体溶液渗透到YSZ多孔体中,然后在800°C下退火2小时,从而制备了镧锶锰锰(LSM)/氧化钇稳定的氧化锆(YSZ)空气电极。 X射线衍射分析证实了LSM相的形成,这是纳米颗粒在YSZ壁上尺寸在50-70nm范围内的形式,正如FEG-SEM观察所揭示的那样。研究和讨论了印刷参数对浸渍相分布的影响。

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