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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Dielectric and magnetic studies of BaTi0.5Fe0.5O3 ceramic materials, synthesized by solid state sintering
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Dielectric and magnetic studies of BaTi0.5Fe0.5O3 ceramic materials, synthesized by solid state sintering

机译:固态烧结合成BaTi0.5Fe0.5O3陶瓷材料的介电和磁学研究

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A comparative study of the surface morphology, dielectric and magnetic properties of the BaTi0.5Fe0.5O3 (BTFO) ceramics materials. This has been carried out by synthesizing the samples in different routes. BTFO samples have shown single phased 12R type hexagonal structure with (R3m) over bar, P4mm space group. Interfacial effects on the dielectric properties of the samples have been understood by Cole-Cole plots in complex impedance and modulus formalism. It has been identified that huge dielectric constant (10(3)-10(6)) at lower frequencies is largely contributed by the heterogeneous electronic microstructure at the interfaces of grains. Modulus formalism has identified the effects of both grain and grain boundary microstructure on the dielectric properties, particularly in chemical routed samples. The order of grain boundary resistivity suggests the semiconductor/insulator class of the material. The grain boundary resistivity of the mechanical alloyed samples is remarkably lower than the solid state and chemical routed samples. Few samples have of the samples have exhibited signature of ferromagnetism at the room temperature. (C) 2014 Elsevier B.V. All rights reserved.
机译:BaTi0.5Fe0.5O3(BTFO)陶瓷材料的表面形态,介电和磁性能的比较研究。这是通过合成不同路线的样品来进行的。 BTFO样本显示了在P4mm空间群上具有(R3m)的单相12R型六角形结构。通过复阻抗和模量形式的Cole-Cole曲线可以理解对样品介电性能的界面效应。已经发现,较低频率下的巨大介电常数(10(3)-10(6))在很大程度上是由晶粒界面处的异质电子微观结构引起的。模量形式主义已经确定了晶粒和晶界微观结构对介电性能的影响,特别是在化学布线样品中。晶界电阻率的顺序暗示​​了材料的半导体/绝缘体类别。机械合金化样品的晶界电阻率显着低于固态和化学路线样品。在室温下,几乎没有样品显示出铁磁性。 (C)2014 Elsevier B.V.保留所有权利。

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