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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 >A comparative study on structural, dielectric and multiferroic properties of CaFe2O4/BaTiO3 core-shell and mixed composites
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A comparative study on structural, dielectric and multiferroic properties of CaFe2O4/BaTiO3 core-shell and mixed composites

机译:Cafe2O4 / BATIO3核壳和混合复合材料结构,介电和多配子特性的比较研究

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摘要

The core-shell CaFe2O4@BaTiO3 and (1 - x) CaFe2O4 - xBaTO(3) (x = 0.3, 0.5, 0.7) mixed composites were synthesized using a combination of solution processing and solid state reaction method respectively followed by high temperature calcinations. The presence of the constituent spinel-ferrite phases in both core-shell and mixed nanocomposites were confirmed by X-ray diffraction patterns and transmission electron microscopy. High-resolution transmission electron microscope images indicate a clear view of ferrite and ferroelectric phases in each core-shell and mixed composite, where the ME coupling effect of ferrite and ferroelectric phase happened. Dependence of dielectric constant (epsilon'), loss tangent (tan delta) and AC conductivity (sigma(AC)) with frequency (100 Hze2 MHz) and temperature (25 degrees C-550 degrees C) with increasing probing frequency (1 kHz-2 MHz) of the composites have been investigated. The peak observed in mixed composites and core-shell nanostructures in the low temperature range (130 degrees C-150 degrees C) are attributed to ferroelectric to paraelectric phase transition of BaTO3. The second peak observed at high temperature attributed to T-C (Curie temperature) of the ferrite (CaFe2O4) phase. The core-shell composite did not show any magnificent improvement in dielectric properties than mixed composites. The presence of ordered FE and FM behavior at room temperature was confirmed by observation of P-E and M-H hysteresis loops; respectively and core-shell composite shows drastic improvement in ferroelectric, magnetic and magneto-electric properties than the mixed composites. In addition, the calculated linear ME coupling coefficient results reveal strong ME coupling effect and the maximum recorded value is similar to 30.32 mV/cmOe for the core-shell composite. The larger value of ME coupling coefficient may arise from larger saturation magnetization and remnant magnetization of the core-shell composite. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用溶液加工和固态反应方法的组合,合成核心壳Cafe2O4 @ BatiO3和(1 - X)Cafe2O4 - Xbato(3)(x = 0.3,0.5,0.7)混合复合材料。通过X射线衍射图案和透射电子显微镜确认核 - 壳和混合纳米复合材料中的组成尖晶石 - 铁氧体相的存在。高分辨率透射电子显微镜图像表示在每个芯 - 壳和混合复合材料中的铁素体和铁电相的清晰视图,其中铁氧体和铁电相的ME耦合效果发生。介电常数(ε'),损耗正切(TAN DELTA)和AC电导率(SIGMA(AC))的依赖性(100 hZE2MHz)和温度(25摄氏度)(25摄氏度)(25摄氏度)(25摄氏度)(25摄氏度)(1 kHz-已经研究了2MHz)复合材料。在低温范围内的混合复合材料和核 - 壳纳米结构(130℃-150℃)中观察到的峰值归因于Bato3的铁电相转变。在高温下观察到铁素体(CaFe2O4)相的T-C(曲线温度)的高温观察到的第二峰。核心壳复合材料未显示出比混合复合材料的介电性质的任何壮观改善。通过观察P-E和M-H磁滞回路确认室温下有订购的Fe和FM行为;分别和核 - 壳复合材料显示出比混合复合材料的铁电,磁性和磁电性能的急剧改善。另外,计算的线性ME耦合系数结果显示强ME耦合效果,最大记录值类似于核心 - 壳复合材料的30.32mV / cmoe。 ME耦合系数的较大值可能来自核心壳复合材料的较大饱和磁化和残余磁化。 (c)2016 Elsevier B.v.保留所有权利。

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