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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Dielectric, ferroelectric and magnetic properties of Pb0.95Pr0.05Zr0.52Ti0.48O3 - CoPr0.1Fe1.9O4 ceramic composite
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Dielectric, ferroelectric and magnetic properties of Pb0.95Pr0.05Zr0.52Ti0.48O3 - CoPr0.1Fe1.9O4 ceramic composite

机译:PB0.95PR0.05ZR0.52TI0.48O3 - COPR0.1FE1.9O4陶瓷复合材料的介电,铁电和磁性性能。

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We investigate the structural, dielectric, ferroelectric and magnetic properties of a ferroelectric-ferrite material: praseodymium doped lead zirconium titanate PZT) and cobalt ferrite CFO) composite. The praseodymium doped PZT and CFO powders were synthesized separately by sol-gel auto combustion technique. The ferroelectric-ferrite composites were then synthesized by mixing the appropriate amount of individual phases using conventional sintering method. The morphological studies revealed a uniform distribution of grains of parent phases in the composite. Powder X-ray diffraction studies showed that the Pr doped PZT possess tetragonal perovskite structure while as Pr doped CFO possesses cubic spinel structure. The parent phases retain their crystal structures in the composite, without formation of any new secondary phase. The dielectric studies of composite, in the temperature range 100-750 K at a selected frequency of 100 kHz, revealed a diffused ferroelectric phase transition. Variation of dielectric constant with frequency in the range of 20 Hz-3 MHz was carried out at room temperature. The reduction in the leakage current due to Pr doping leads to typical saturated P-E hysteresis loops for the composite, confirming their ferroelectric nature. The low temperature ac conductivity follows Motts law, confirming the hopping conduction mechanism in the composites. At room temperature, the composite exhibit typical magnetic hysteresis loop, indicating the presence of a long range magnetic order. The calculated values of squareness ratio for the composites confirmed the presence of multi-domain structure. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们研究铁电铁素体材料的结构,电介质,铁电和磁性,掺杂掺杂锆钛酸锆PZT)和钴铁氧体CFO)复合材料。通过溶胶 - 凝胶自动燃烧技术单独合成掺杂镨的PZT和CFO粉末。然后通过使用常规烧结方法混合适量的单个相,通过混合适量的单相来合成铁电铁素体复合材料。形态学研究表明复合材料中母相颗粒的均匀分布。粉末X射线衍射研究表明,PR掺杂PZT具有四方钙钛矿结构,同时称为PR掺杂CFO具有立方尖晶石结构。母相保留其在复合材料中的晶体结构,而不形成任何新的二相。复合材料的介电研究,在100 kHz的选定频率的温度范围内的温度范围内,揭示了扩散铁电相转变。在室温下进行20Hz-3MHz范围内的频率常数的介电常数。由于PR掺杂引起的漏电流的降低导致复合材料典型的饱和P-E滞后环,确认其铁电性质。低温交流电导率沿莫特法,确认复合材料中的跳跃传导机构。在室温下,复合材料表现出典型的磁磁滞回路,表示存在长距离的磁序。复合材料的平方率的计算值证实了多域结构的存在。 (c)2017年Elsevier B.V.保留所有权利。

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