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Investigation of Graded La2NiO4+ Cathodes to Improve SOFC Electrochemical Performance

机译:分级La2NiO4 +阴极改善SOFC电化学性能的研究

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摘要

Mixed ionic and electronic conducting MIEC oxides are promising materials for use as cathodes in solid oxide fuel cells SOFCs due to their enhanced electrocatalytic activity compared with electronic conducting oxides. In this paper, the MIEC oxide La2NiO4+ was prepared by the sol-gel route. Graded cathodes were deposited onto yttria-stabilized zirconia YSZ pellets by dip-coating, and electrochemical impedance spectroscopy studies were performed to characterize the symmetrical cell performance. By adapting the slurries, cathode layers with different porosities and thicknesses were obtained. A ceria gadolinium oxide CGO barrier layer was introduced, avoiding insulating La2Zr2O7 phase formation and thus reducing resistance polarization of the cathode. A systematic correlation between microstructure, composition, and electrochemical performance of these cathodes has been performed. An improvement of the electrochemical performance has been demonstrated, and a reduction in the area specific resistance ASR by a factor of 4.5 has been achieved with a compact interlayer of La2NiO4+ between the dense electrolyte and the porous La2NiO4+ cathode layer. The lowest observed ASR of 0.11 cm2 at 800°C was obtained from a symmetrical cell composed of a YSZ electrolyte, a CGO interlayer, an intermediate compact La2NiO4+ layer, a porous La2NiO4+ electrode layer, and a current collection layer of platinum paste.
机译:混合的离子和电子导电MIEC氧化物由于与电子导电氧化物相比具有增强的电催化活性,因此有望用作固体氧化物燃料电池SOFC中的阴极。本文采用溶胶-凝胶法制备了MIEC氧化物La2NiO4 +。通过浸涂将分级阴极沉积在氧化钇稳定的氧化锆YSZ颗粒上,并进行电化学阻抗谱研究以表征对称电池性能。通过调整浆料,获得具有不同孔隙率和厚度的阴极层。引入了氧化铈氧化铈CGO阻挡层,避免了绝缘的La2Zr2O7相形成,从而减少了阴极的电阻极化。在这些阴极的微观结构,组成和电化学性能之间进行了系统的关联。已经证明了电化学性能的改善,并且通过在致密电解质和多孔La 2 NiO 4 +阴极层之间的紧凑的La 2 NiO 4 +中间层,已经实现了面积比电阻ASR降低了4.5倍。从由YSZ电解质,CGO中间层,中间致密La2NiO4 +层,多孔La2NiO4 +电极层和铂糊的集电层组成的对称电池中获得了在800°C时观测到的最低ASR为0.11 cm2。

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