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Novel Microstructural Strategies To Enhance the Electrochemical Performance of La0.8Sr0.2MnO3-delta Cathodes

机译:增强La0.8Sr0.2MnO3-δ阴极电化学性能的新微结构策略

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摘要

Novel strategies based on spray-pyrolysis deposition are proposed to increase the triple-phase boundary (TPB) of La0.8Sr0.2MnO3-delta (LSM) cathodes in contact with yttria-stabilized zirconia (YSZ) electrolyte: (i) nanocrystalline LSM films deposited on as-prepared YSZ surface; (ii) the addition of poly(methyl methacrylate) microspheres as pore formers to further increase the porosity of the film cathodes; and (iii) the deposition of LSM by spray pyrolysis on backbones of Zr0.84Y0.16O1.92 (YSZ), Ce0.9Gd0.1O1.95 (CGO), and Bi1.5Y0.5O3-delta (BYO) previously fixed onto the YSZ. This last method is an alternative to the classical infiltration process with several advantages for large-scale manufacturing of planar solid oxide fuel cells (SOFCs), including easier industrial implementation, shorter preparation time, and low cost. The morphology and electrochemical performance of the electrodes are investigated by scanning electron microscopy and impedance spectroscopy. Very low values of area specific resistance are obtained, ranging from 1.4 Omega.cm(2) for LSM films deposited on as-prepared YSZ surface to 0.06 Omega-cm(2) for LSM deposited onto BYO backbone at a measured temperature of 650 degrees C. These electrodes exhibit high performance even after annealing at 950 degrees C, making them potentially suitable for applications in SOFCs at intermediate temperatures.
机译:提出了基于喷雾热解沉积的新策略,以增加与氧化钇稳定的氧化锆(YSZ)电解质接触的La0.8Sr0.2MnO3-δ(LSM)阴极的三相边界(TPB):(i)纳米晶体LSM膜沉积在准备好的YSZ表面上; (ii)添加聚(甲基丙烯酸甲酯)微球作为成孔剂,以进一步增加膜阴极的孔隙率; (iii)通过喷雾热解法将LSM沉积在Zr0.84Y0.16O1.92(YSZ),Ce0.9Gd0.1O1.95(CGO)和Bi1.5Y0.5O3-delta(BYO)的骨架上YSZ。最后一种方法是传统渗透工艺的替代方法,具有大规模生产平面固体氧化物燃料电池(SOFC)的多个优点,包括易于工业实施,缩短制备时间和降低成本。通过扫描电子显微镜和阻抗谱研究电极的形态和电化学性能。获得非常低的面积比电阻值,范围从沉积在准备好的YSZ表面上的LSM膜的1.4Ω.cm(2)到在650度的测量温度下沉积到BYO主链上的LSM的0.06Ω.cm(2)这些电极即使在950摄氏度的退火条件下也表现出高性能,使其有可能适用于中等温度下的SOFC。

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