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Structure and defect interaction mediated transport mechanism of mixed di-tri valent cation containing ceria-based Ionic conductors

机译:含二氧化铈基离子导体的混合二价阳离子的结构和缺陷相互作用介导的输运机理

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The aim of this study is to investigate structure and electrical response of mixed di-tri valent cation containing Ce1-xHo0.1SrxO2-δ(x = 0.02–0.1) ionic conductor. The Rietveld analysis of X-ray diffraction profiles confirms the solubility limit of Sr2+ions into ceria lattice upto x = 0.06 and the co-existence of secondary phase SrCeO3afterwards. With the increase of Sr2+ions into ceria, formation of defect cluster increases and concentration of free oxygen vacancies decreases. The composition x = 0.06 shows lowest conductivity due the highest association energy of defect clusters. The dielectric constant plays a crucial role for the formation of defect clusters and conductivities of the compositions. The presence of SrCeO3and depletion of oxygen vacancies at grain boundary region enhance the grain boundary resistances. The dielectric constant of grain boundary region affects the grain boundary conductivity.
机译:这项研究的目的是研究含有Ce1-xHo0.1SrxO2-δ(x = 0.02-0.1)离子导体的混合三价阳离子的结构和电响应。 X射线衍射图的Rietveld分析证实了Sr2 +离子在二氧化铈晶格中的溶解度极限高达x = 0.06,并且随后存在第二相SrCeO3。随着进入二氧化铈中Sr2 +离子的增加,缺陷簇的形成增加,自由氧空位的浓度降低。由于缺陷簇的最高缔合能,组成x = 0.06显示出最低的电导率。介电常数对于缺陷簇的形成和组合物的电导率起关键作用。 SrCeO3的存在和晶界区域氧空位的耗竭增强了晶界电阻。晶界区域的介电常数影响晶界电导率。

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