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Some Structural Aspects of Ionic Conductivity in Co-Doped Ceria-Based Electrolytes

机译:共掺杂二氧化铈基电解质中离子电导率的一些结构方面

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The sinters of co-doped ceria solid solutions with the formula of Ce0.85Sm0.15-x RxO1.9, where R = Y, Gd, Pr, Tb, Ox-0.15, were obtained from powders synthesised by Pechini method. The linear variation of cell parameter a vs. chemical composition was observed for Ce0.85Sm0:15-xRxO1.9, where R = Y, Gd, Tb, 0 x0.15 samples. However, the introduction of Pr3+ into Ce0.85Sm0.15-x PrxO1.9 caused a small deviation from linearity due to possible changes in the valence from Pr3+ to Pr4+. The determined values of oxide transference number tion for Ce0.85Sm0.15-xRxO1.9, R = Y, Gd in the temperature range 400-750°C and partial oxygen pressure from 10-6 to 1 atm were close to 1, which indicated that materials investigated exhibited practically pure ionic oxide conductivity. On the other hand, the introduction of Tb3+ or Pr3+ higher than x0.05 into solid solution Ce0.85Sm0.15-xRxO1.9, R = Tb, Pr caused a decrease in the ionic transference number tion below 1 due to an increase in partial electronic conduction. This fact limiting investigated co-doped terbia and samaria or samaria and praseodymia ceria-based solid solutions for the further application as oxide electrolytes in solid oxide fuel cells. The analysis of bulk and grain boundary values indicated that partial substitution of Sm3+ by Y3+ or Gd3+ caused slight improvements in the ionic conductivity of Ce0.85Sm0.15-xRxO1.9. The highest ionic conductivity was found for solid solution with chemical composition Ce0.85Sm0.1Y0.05O1.9. The selected co-doped ceria samples were tested as solid electrolytes in solid oxide fuel cells operating in the intermediate temperature range 500-750°C.
机译:由Pechini方法合成的粉末得到具有Ce0.85Sm0.15-x RxO1.9的共掺杂二氧化铈固溶体的烧结体,其中R = Y,Gd,Pr,Tb,Ox-0.15。对于Ce0.85Sm0:15-xRxO1.9,观察到细胞参数a与化学组成的线性变化,其中R = Y,Gd,Tb,0 0.05的Tb3 +或Pr3 +引入固溶体Ce0.85Sm0.15-xRxO1.9中,R = Tb,Pr导致离子传递数ation降低至1以下,这是由于Cb的增加所致。部分电子传导。这一事实的局限性研究了共掺杂的氧化钛和沙门氏菌或基于沙门氏菌和的氧化铈基固溶体,以进一步在固体氧化物燃料电池中用作氧化物电解质。体积和晶界值的分析表明,Sm3 +被Y3 +或Gd3 +部分取代导致Ce0.85Sm0.15-xRxO1.9的离子电导率略有改善。发现化学成分为Ce0.85Sm0.1Y0.05​​O1.9的固溶体具有最高的离子电导率。所选的共掺杂氧化铈样品在固体氧化物燃料电池中作为固体电解质测试,该燃料电池在500-750°C的中间温度范围内运行。

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