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Grain boundary effects in bulk colossal magneto resistive (CMR) manganites and manganite/insulator composites: electrical and magnetic properties

机译:块状巨大磁阻(CMR)锰矿和锰矿/绝缘体复合材料的晶界效应:电磁性能

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摘要

In the first part of this paper, we discuss the effects of grain boundaries on the properties of bulk colossal magnetoresistive (CMR) manganites We compare the electrical resistivity and AC magnetic susceptibility of perovskite La-Ca-Mn-O samples with the same nominal stoichiometry but differing in their microstructure (i) a single grain sample, (ii) a sample containing two grains and (iii) a polycrystalline sample Emphasis is placed on information that can be deduced from the measurements in each case In the second part of the paper, we report the data measured on composite samples containing a CMR phase (La-Ca-Mn-O) and an insulating phase (Mn3O4) The results are discussed in the framework of percolation theory We show how the grain boundaries affect the electrical properties of these materials, and we highlight the crucial role of geometric (demagnetization) effects on the resistance vs magnetic field measurements
机译:在本文的第一部分中,我们讨论了晶界对块状巨磁致电阻(CMR)锰矿性能的影响。我们比较了标称化学计量相同的钙钛矿型La-Ca-Mn-O样品的电阻率和交流磁化率但在微观结构上有所不同(i)单个晶粒样品;(ii)包含两个晶粒的样品;(iii)多晶样品。重点放在可以从每种情况下的测量值推导出来的信息上。 ,我们报告了在包含CMR相(La-Ca-Mn-O)和绝缘相(Mn3O4)的复合样品上测得的数据。在渗流理论的框架内讨论了结果。我们展示了晶界如何影响合金的电性能。这些材料,我们重点介绍了几何(退磁)效应对电阻与磁场测量的关键作用

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