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Microstructural development and oxygen ion mobility in Sr, Ba, and Ca-doped LaAlO3 perovskites

机译:SR,Ba和Ca-Doped Laalo3 Perovskites中的微结构开发和氧离子迁移率

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Perovskite-type materials have been extensively investigated in the attempt to find new electrolyte materials for Solid Oxide Fuel Cell that work at low temperatures. Among these materials, LaAlO3 stands out for presenting considerable ionic conductivity when adequately doped. In this work, pure and Sr, Ba, and Ca-doped LaAlO3 were studied. The powders were prepared by solid state reaction. Microstructural, structural and electrical conductivity of sintered samples were analyzed by scanning electron microscopy, X-ray diffraction and impedance spectroscopy, respectively. Among the different kinds of dopants, Sr-doped sample presented the higher conductivity, for both the grain ( at 800?°C) and total ( at 800?°C) conductivity. In all doped samples, the total conductivity is controlled by the grain boundary, i.e., the grain boundary is more resistive than the grain, and the microstructures are heterogeneous and the degree of heterogeneity is determined by the dopant.
机译:钙钛矿型材料已被广泛研究,以试图找到用于在低温下工作的固体氧化物燃料电池的新电解质材料。在这些材料中,Laal3突出,用于在充分掺杂时呈现相当大的离子电导率。在这项工作中,研究了纯和SR,BA和CA-DOPED LAALO3。通过固态反应制备粉末。通过扫描电子显微镜,X射线衍射和阻抗光谱分析烧结样品的微观结构,结构和电导率。在不同种类的掺杂剂中,SR掺杂样品呈现较高的导电性,对于晶粒(在800℃)和总(800℃)的电导率下呈现较高的导电性。在所有掺杂的样品中,总电导率由晶界控制,即,晶界比晶粒更电阻,并且微观结构是异质的,并且通过掺杂剂确定异质性程度。

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