首页> 外文期刊>Journal of Fuel Cell Science and Technology >Relationship Between Oxide-Ion Conductivity and Ordering of Oxygen Vacancy in the Ln2Zr2O7 (Ln = La, Nd, Eu) System Using High Temperature XRD
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Relationship Between Oxide-Ion Conductivity and Ordering of Oxygen Vacancy in the Ln2Zr2O7 (Ln = La, Nd, Eu) System Using High Temperature XRD

机译:Ln2Zr2O7(Ln = La,Nd,Eu)体系中高温XRD的氧离子电导率与氧空位有序的关系

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摘要

The pyrochlore-type Ln2Zr2O7 (Ln = La, Nd, Eu) systems were refined by Rietveld analyses of XRD data combined with the MEM-based pattern fitting at RT, 873, 1073, and 1273 K. All the samples kept a single cubic phase of the pyrochlore-type structure in the temperature range up to 1273 K. The oxide-ion conductivities of the present systems were discussed on a basis of ordering of oxygen vacancy in the pyrochlore-type structure. Theoxide-ion conduction of Eu2Zr2O7 was ascribed to diffusion of oxygen along the 100 direction, while the hole conduction of La2Zr2O7 occurred along the 110 direction, according to the charge density map estimated by the MEM analysis.
机译:通过对XRD数据进行Rietveld分析并结合基于MEM的模式拟合在RT,873、1073和1273 K下精制了烧绿石型Ln2Zr2O7(Ln = La,Nd,Eu)系统。所有样品均保持单一立方相在高达1273 K的温度范围内对烧绿石型结构进行了分析。基于烧绿石型结构中氧空位的排序,对本系统的氧化物离子电导率进行了讨论。根据通过MEM分析估计的电荷密度图,Eu2Zr2O7的氧化物离子传导归因于氧气沿100方向的扩散,而La2Zr2O7的空穴传导沿110方向发生。

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