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Structural, electrical and transport properties of yttrium-doped proton-conducting strontium cerates

机译:掺钇的质子传导锶铈酸盐的结构,电学和输运性质

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Series of SrCe_(1-x)Y_xO_(3-δ) solid solutions with x varying between 0 and 0.2 were prepared by solid-state reaction method. XRD results revealed that samples with 0 ≤ x < 0.1 (SrCe_(1-x)Y_xO_(3-δ)) are homogenous perovskite phases, while the samples with higher concentration of yttrium contain admixture of other phase (identified as Sr_2CeO_4). According to SEM observations the samples were dense with uniform grain sizes within 3-5 μm. Impedance spectroscopic investigations revealed a strong influence of Y concentration on electrical properties of SrCe_(1-x)Y_xO_(3-δ). The activation energies of the total electrical conductivity as well as grain boundary and bulk components have been determined. Mixed ionic-electronic conductivity in studied materials at experimental conditions has been observed. Potentiometric measurements of EMF versus temperature of solid cells containing studied materials as solid electrolytes were performed in order to determine ionic transference numbers versus temperature.
机译:通过固相反应法制备了一系列SrCe_(1-x)Y_xO_(3-δ)固溶体,其中x在0和0.2之间变化。 XRD结果表明,0≤x <0.1(SrCe_(1-x)Y_xO_(3-δ))的样品为均质钙钛矿相,而钇含量较高的样品则含有其他相的混合物(标识为Sr_2CeO_4)。根据SEM观察,样品致密且晶粒大小均在3-5μm之内。阻抗谱研究表明,Y浓度对SrCe_(1-x)Y_xO_(3-δ)的电性能有很大影响。已经确定了总电导率的活化能以及晶界和主体成分。在实验条件下,已观察到材料中的混合离子电导率已被观察到。为了确定离子转移数与温度的关系,对包含研究材料作为固体电解质的固体电池的EMF对温度的电位测量。

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