首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >The relationship between oxide-ion conductivity and cation vacancy order in the hybrid hexagonal perovskite Ba3VWO8.5
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The relationship between oxide-ion conductivity and cation vacancy order in the hybrid hexagonal perovskite Ba3VWO8.5

机译:杂交六边形钙钛矿BA3VWO8.5中氧化离子电导率与阳离子空位顺序的关系

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Significant oxide ionic conductivity has recently been reported in cation-deficient hexagonal perovskite Ba3M ' M '' O(8.5)derivatives (M ' = Nb; M '' = Mo, W), with disordered hybrid 9R-palmierite average structures. Here, we present a study of the crystal structure and electrical properties of the related compound Ba3VWO8.5. Electrical characterization demonstrates that Ba(3)VWO(8.5)is also an oxide ion conductor with a bulk conductivity of 2.0 x 10(-3)S cm(-1)in air at 900 degrees C, thus revealing that it is possible to obtain oxide ion conducting Ba3M ' M '' O(8.5)materials with a variety of different M ' M '' combinations. Whilst Ba(3)NbMoO(8.5)and Ba(3)NbWO(8.5)present a random distribution of cationic vacancies, X-ray and neutron diffraction experiments demonstrate that the cationic vacancies are ordered on the M2 sites in Ba3VWO8.5, resulting in a structure where M1O(x)palmierite-like layers are separated by empty octahedral cavities. Bond-valence site energy (BVSE) analysis on the different phases reveals that ordering of the cationic vacancies hinders long-range oxygen diffusivity parallel to thec-axis in Ba(3)VWO(8.5)explaining the reduced ionic conductivity of this compound. These results suggest that, together with the dominant 2-dimensional conduction pathway along the palmierite-like layers, additional diffusion routes parallel to thec-axis provide a relevant contribution to the conductivity of these Ba3M ' M '' O(8.5)systems by creation of a complex 3-dimensional ionic percolation network, the topology of which depends on the particular arrangement of cation and anion vacancies.
机译:最近报道了含有显着的氧化物离子电导率在阳离子缺陷的六边形钙钛矿Ba3M'm'O(8.5)衍生物(M'= Nb; M''= Mo,W)中,具有无序的杂交9R-Palmierite平均结构。在这里,我们展示了相关复合Ba3Vwo8.5的晶体结构和电性能的研究。电学表征表明,Ba(3)Vwo(8.5)也是氧化物离子导体,其在900℃的空气中具有2.0×10(-3)厘米(-1)的氧化物离子导体,因此可以揭示它可以通过各种不同的M'M''组合获得氧化物离子传导Ba3M'M'O(8.5)材料。虽然BA(3)NBMOO(8.5)和BA(3)NBWO(8.5)呈现阳离子空缺的随机分布,X射线和中子衍射实验表明,阳离子空缺在BA3VWO8.5中的M2位点上排序,产生在一个结构中,M1O(X)脱脂层的层被空八面体腔分离。不同阶段的键合现场能量(BVSE)分析揭示了阳离子空位的排序阻碍了与BA(3)VWO(8.5)中的轴平行的远程氧扩散,解释该化合物的离子电导率降低。这些结果表明,与沿着掌力层的层的主要二维传导通路一起,平行于Thec-轴的附加扩散路线为通过创建提供了这些BA3M'M'O(8.5)系统的导电性的相关贡献复杂的三维离子渗透网络,其拓扑依赖于阳离子和阴离子空位的特定布置。

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