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首页> 外文期刊>Solid state ionics >Correlation between thermal expansion and oxide ion transport in mixed conducting perovskite-type oxides for SOFC cathodes
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Correlation between thermal expansion and oxide ion transport in mixed conducting perovskite-type oxides for SOFC cathodes

机译:SOFC阴极混合导电钙钛矿型氧化物的热膨胀与氧化物离子迁移的相关性

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Oxygen deficiency, electrical conductivity, ionic transport and thermal expansion of alternative cathode materials of the A(1-a)A(a)'BO3 perovskite-type oxides (A = La, Pr, Ce; A' = Sr: B = Mn, Fe, Co, Ni, Ga. Mg) were measured as a function of temperature and oxygen partial pressure. Additionally, lanthanum strontium gallates were investigated as electrolyte materials. On the basis of the results a general picture of the A- and B-site influences on the thermal and electrical properties of the perovskite-type oxides is discussed. From lanthanum manganite to strontium ferrite and from lanthanum ferrite to strontium cobaltite the thermodynamic stabilities decrease and thermal expansion coefficients increase. The increase of the ionic conductivity is more influenced by Sr concentration on the A-site, and the increase of the electronic conductivity more by Fe and Co concentration on the B-site, respectively. The ionic conductivities at 800 degreesC calculated from permeation measurements are correlated with the thermal expansion coefficients in the form of log sigma (O) = - 7.08 + 2.9 X 10(5) X TEC (sigma (O) in S cm(-1), TEC in 10(-6) K-1). The correlation is discussed on the basis of the dependence of both quantities on oxygen vacancy concentration. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 23]
机译:A(1-a)A(a)'BO3钙钛矿型氧化物(A = La,Pr,Ce; A'= Sr:B = Mn)的替代阴极材料的氧缺乏,电导率,离子迁移和热膨胀(Fe,Co,Ni,Ga.Mg)作为温度和氧分压的函数进行测量。另外,研究了镓酸镧锶作为电解质材料。基于结果,讨论了A位和B位对钙钛矿型氧化物的热和电性能的影响的概况。从锰酸镧到铁酸锶,从铁酸镧到钴酸锶,热力学稳定性下降,热膨胀系数增加。离子电导率的增加受A位上Sr浓度的影响更大,而电子电导率的增加分别受B位上的Fe和Co浓度的影响。通过渗透测量计算出的800摄氏度下的离子电导率与热膨胀系数相关,对数σ(O)=-7.08 + 2.9 X 10(5)X TEC(σ(O)以S cm(-1)为单位) ,TEC在10(-6)K-1中)。基于两个量对氧空位浓度的依赖性来讨论相关性。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:23]

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