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Contrary interfacial effects for textured and non-textured multilayer solid oxide electrolytes

机译:纹理和非纹理多层固体氧化物电解质的互相界面效应

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摘要

The relationship between the microstructure and the conductivity for nanocrystallized oxygen ionic conducting thin films has been receiving great interest since it provides guidelines for designing electrolytes with high performances which might find applications in fuel cells and oxygen and fuel separation membranes. Here, we present a strategy for using the multilayered structure to tune the microstructures and ionic transport properties of solid electrolyte. Textured and non-textured Ce0.8Sm0.2O2-delta/Al2O3 (SDC/AO) solid electrolyte multilayers were prepared, and the dependence of conductivity on layer number was studied. We found that non-textured and textured multilayers show a positive and a negative interfacial conduction contribution to the total ionic conductivity, respectively. The decrease of conductivity with the increase of layer number for textured SDC/AO was attributed to that the multilayered structure introduces random grain orientations to the interfacial region which results in more pronounced grain boundary blocking effects. In contrast, non-textured SDC/AO show rich structural defects in the interfacial regions which facilitate the oxygen ionic transport and lead to a higher ionic conductivity. These insights into the effect of the interfacial interaction on the structure and the conductivity allow a better control of the electrical properties of multilayered electrolytes, which might foster their applications in electrochemical devices operable at lower temperatures.
机译:微观结构与纳米晶体离子传导薄膜的电导率之间的关系已经得到了极大的兴趣,因为它提供了设计具有高性能的电解质的指导性,这可能在燃料电池和氧气和燃料分离膜中找到应用。这里,我们提出了一种使用多层结构来调谐固体电解质的微观结构和离子传输性能的策略。制备纹理和非纹理CE0.8SM0.2O2-DERTA / AL2O3(SDC / AO)固体电解质多层多层,研究了电导率对层数的依赖性。我们发现非纹理和纹理的多层分别显示出对总离子电导率的正界面和负界面传导贡献。对于纹理SDC / AO的层数的增加,导电性的降低归因于多层结构将随机晶面向界面区域引入导致更明显的晶界阻断效果。相反,非纹理的SDC / AO显示界面区域中的富有结构缺陷,其促进氧离子传输并导致更高的离子电导率。这些见解对结构和电导率的界面相互作用的影响允许更好地控制多层电解质的电性能,这可能促进其在较低温度下可操作的电化学装置中的应用。

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  • 来源
    《RSC Advances 》 |2016年第41期| 共9页
  • 作者单位

    Tsinghua Univ Sch Mat Sci &

    Engn State Key Lab New Ceram &

    Fine Proc Beijing 100084 Peoples R China;

    Toyota Motor Co Ltd Mat Dev Div Funct Mat Dept Toyota Aichi 4718572 Japan;

    Tsinghua Univ Sch Mat Sci &

    Engn State Key Lab New Ceram &

    Fine Proc Beijing 100084 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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