材料科学
氧化钇稳定氧化锆
电解质
固体氧化物燃料电池
阴极
镧
电导率
离子电导率
氧化物
立方氧化锆
无机化学
极化(电化学)
化学工程
氧化镧
快离子导体
复合材料
陶瓷
冶金
电极
化学
物理化学
工程类
作者
Hirofumi Sumi,Susumu Takahashi,Yuki Yamaguchi,Hiroyuki Shimada
标识
DOI:10.1080/21870764.2021.1905254
摘要
Gadolinia-doped ceria (GDC) is widely used as an interlayer for preventing the formation of SrZrO3 between yttria-stabilized zirconia (YSZ) electrolyte and lanthanum strontium cobalt iron oxides (LSCF) cathode for solid oxide fuel cells (SOFCs). However, the diffusion of Gd ions to YSZ electrolyte results in the decrease in ionic conductivity due to the formation of Gd2(Zr, Ce)2O7. In the present work, we focus on lanthanum-doped ceria (LDC) as an interlayer between YSZ electrolyte and LSCF cathode. The ionic conductivity of YSZ/LDC composite was higher than that of YSZ/GDC composite in spite of the lower conductivity of LDC than GDC. The maximum power density for the microtubular SOFC with LDC interlayer was better than that with GDC interlayer. While the ohmic resistance decreased by the change from GDC to LDC interlayers, the polarization resistance for oxygen reduction reaction slightly increased as a result of distribution of relaxation times (DRT) analysis. The chemical compositions of Zr, Ce and La was gradually varied at the interface between YSZ electrolyte and LDC interlayer, which affected the both of ohmic and polarization resistances.
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