首页> 外文期刊>Journal of magnetism and magnetic materials >Magnetic field induced polarization and magnetoelectric effect in Na_(0.5)Bi_(0.5)TiO_3-Co_(0.75)Zn_(0.25)Cr_(0.2)Fe_(1.8)O_4 multiferroic composite
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Magnetic field induced polarization and magnetoelectric effect in Na_(0.5)Bi_(0.5)TiO_3-Co_(0.75)Zn_(0.25)Cr_(0.2)Fe_(1.8)O_4 multiferroic composite

机译:Na_(0.5)Bi_(0.5)TiO_3-Co_(0.75)Zn_(0.25)Cr_(0.2)Fe_(1.8)O_4多铁性复合材料中的磁场感应极化和磁电效应

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摘要

Multiferroic composites of Zn-Cr substituted cobalt ferrite (Co-0.75 Zn0.25Cr0.2Fe1.8O4) (CZCFO) nanoparticles and lead-free piezoelectric sodium bismuth titanate Na0.5Bi0.5TiO3 (NBT) having composition (1 - x) Na0.5Bi0.5TiO3 + (x)Co-0.75 Zn0.25Cr0.2Fe1.8O4 (x = 0.0, 0.25, 0.5, 0.75, 1.0) were investigated in this study. Ferromagnetic-CZCFO and ferroelectric-NBT phases were synthesized via sol-gel auto combustion route and solid-state reaction methods respectively. The structural properties of composite materials were studied using X-ray diffraction (XRD) technique. Intense and sharp peaks observed in XRD patterns confirm that both the phases are well crystalline in nature. Two separate phases of CZCFO and NBT are present in composite material without any impurity or chemical reaction among them. The morphology of prepared samples was studied via scanning electron microscopy confirming that composite materials are well-densified and homogenous grain size distribution. The magnetic hysteresis loops of multiferroic composite were investigated by using vibrating sample magnetometer at room temperature. The lead free multiferroic composite exhibiting a large converse magnetoelectric (ME) effect at room temperature. The maximum value of ME coefficient (alpha(ME) = 7.92 kV/cm) is obtained at x = 0.50. Furthermore, electrical properties of nanocomposite material were studied by P-E hysteresis loop and dielectric measurements at room temperature.
机译:Zn-Cr取代钴铁氧体(Co-0.75 Zn0.25Cr0.2Fe1.8O4)(CZCFO)纳米粒子与无铅压电钛酸铋钠Na0.5Bi0.5TiO3(NBT)的多铁复合物,其组成为(1-x)Na0。本研究研究了5Bi0.5TiO3 +(x)Co-0.75 Zn0.25Cr0.2Fe1.8O4(x = 0.0,0.25,0.5,0.75,1.0)。分别通过溶胶-凝胶自燃路线和固相反应方法合成了铁磁CZCFO相和铁电NBT相。利用X射线衍射(XRD)技术研究了复合材料的结构性能。在XRD图谱中观察到的强烈尖锐峰证实了这两个相的性质都很好。复合材料中存在CZCFO和NBT两个独立的相,它们之间没有任何杂质或化学反应。通过扫描电子显微镜研究了制备样品的形态,证实了复合材料的致密化和均匀的粒度分布。通过在室温下使用振动样品磁力计研究了多铁性复合材料的磁滞回线。无铅多铁复合材料在室温下表现出较大的逆磁电(ME)效应。在x = 0.50处获得ME系数的最大值(alpha(ME)= 7.92 kV / cm)。此外,通过P-E磁滞回线和室温下的介电测量研究了纳米复合材料的电性能。

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