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Effect of aging on conductivity of yttria stabilized zirconia

机译:时效对氧化钇稳定氧化锆电导率的影响

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The electrical conductivity change with annealing at 1000 C in the Y_2O_3-ZrO_2 (YSZ) system was examined. Among the sintered samples doped with 8.0 mol% Y_2O_3 (8.0YSZ), 8.5 mol% Y_2O_3 (8.5YSZ), 9.0 mol% Y_2O_3 (9.0YSZ), 9.5 mol% Y_2O_3 (9.5YSZ) and 10.0 mol% Y_2O_3 (10.0YSZ), 9.5- and 10.0YSZ showed no conductivity decrease even for the annealing period of 1000 h, while 8.0- and 8.5YSZ showed significant decrease with time although the initial conductivities were higher than those of 9.5- and 10.0YSZ. The 9.0YSZ showed only slight conductivity decrease. The measurement of Raman spectra demonstrated that the deterioration in conductivity related to the gradual formation of fine tetragonal phase in the cubic phase. Consequently, 9.5YSZ was seemed to be optimum as the electrolyte material of solid oxide fuel cells from the point of stability in high conductivity.
机译:研究了Y_2O_3-ZrO_2(YSZ)系统中在1000℃退火引起的电导率变化。在掺杂有8.0 mol%Y_2O_3(8.0YSZ),8.5 mol%Y_2O_3(8.5YSZ),9.0 mol%Y_2O_3(9.0YSZ),9.5 mol%Y_2O_3(9.5YSZ)和10.0 mol%Y_2O_3(10.0YSZ)的烧结样品中,即使初始电导率高于9.5-YSZ和10.0YSZ,但9.5-和10.0YSZ甚至在1000 h的退火时间内也没有显示出电导率的降低,而8.0-和8.5YSZ随时间的推移却显示出明显的降低。 9.0YSZ仅显示出轻微的电导率下降。拉曼光谱的测量表明,电导率的下降与立方相中精细四方相的逐渐形成有关。因此,从高电导率的稳定性的观点来看,9.5YSZ似乎是最适合作为固体氧化物燃料电池的电解质材料。

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