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The intrinsic origin of the grain-boundary resistance in Sr-doped LaGaO3

机译:掺Sr的LaGaO3中晶界电阻的内在根源

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In this paper I summarize our recent investigations (Park and Kim, Phys Chem C 111:14903, 2007; Solid State Ionics 179:1329, 2008) on the origin of the grain-boundary resistance in a doped LaGaO3, a perov-skite-structured solid electrolyte. The partial electronic and ionic resistances of the bulk and the grain boundaries, as well as the total resistance, in 1 mol% Sr-doped LaGaO3 were measured separately by means of a dc-polarization method and ac-impedance spectroscopy. Both of the partial resistances at the grain boundaries were greater than the bulk counterparts, indicating that the grain boundaries impede the ionic as well as the electronic transport in this material. The transference number of the partial electronic conductivity at the grain boundary was however greater than that in the bulk. This fact strongly suggests that both electronic and ionic charge carriers deplete at the grain boundaries to form the space-charge zones and that the grain-boundary cores in this material are positively charged. In light of the fact that the effective charge of the oxygen vacancy (+2) is greater than that of the electron hole (+1), the oxygen vacancies deplete more sharply in the space-charge zones compared to the electron holes such that the grain boundaries become more mixed conducting relative to the bulk. These observations verify that the electrical conduction across the grain-boundaries in 1 mol% Sr-doped LaGaO3 is governed by the space charge.
机译:在本文中,我总结了我们最近的研究(Park和Kim,Phys Chem C 111:14903,2007; Solid State Ionics 179:1329,2008),研究了掺杂LaGaO3(钙钛矿型沸石)中晶界电阻的起源。结构化固体电解质。通过直流极化法和交流阻抗光谱法分别测量了1摩尔%的Sr掺杂LaGaO3中的块体和晶界的部分电子和离子电阻以及总电阻。晶界处的两个分电阻都比体相电阻大,表明晶界阻碍了该材料中的离子以及电子传输。然而,部分电子电导率在晶界处的迁移数大于在体中。这一事实强烈表明,电子和离子载流子都在晶界处耗尽,形成了空间电荷区,并且这种材料中的晶界核带正电。鉴于氧空位(+2)的有效电荷大于电子空穴(+1)的有效电荷,与电子空穴相比,空间电荷区中的氧空位更加急剧地耗尽,因此相对于整体,晶界变得更加混杂。这些观察结果证明,在1摩尔%的掺Sr的LaGaO3中,跨晶界的电导受空间电荷控制。

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