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Magnetoelectric coupling caused by strain mediation in hetero-structured spinel-perovskite multiferroic composites

机译:杂结构尖晶石 - 钙钛矿型多态复合材料应变调解引起的磁电耦合

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摘要

Interfacial coupling in heterostructures of spinel-perovskite nanocomposites, primarily controls the performance of the multiferroic samples, especially in such type of binary structure systems. The interfacial response in this class of composites is a key feature to enhance the magnetoelectric response of the materials. For this purpose, here we synthesized a series of 0.5BiFeO_(3-0.)5Ni_(0.5)Co_(0.5)Fe_2O_4 by substituting Zn at Co-site in spinel phase, using a facile wet chemical technique. The structural analysis carried out using X-ray diffraction revealed the presence of both the phases. Spherical type agglomerated grains with sharp and distinct grain boundaries were exposed by field emission scanning electron microscopy. Elemental profile was mapped by energy dispersive X-ray spectroscopy to confirm the stoichiometric composition of these composites. Improvement in saturation magnetization and remanence with increasing substitution contents was analyzed via vibrating sample magnetometer. In addition, the ferroelectric investigations were carried out to calculate the recoverable energy and energy loss density. Magneto-polarizability investigations uncovered the potential of these composites for multi-state device applications.
机译:尖晶石 - 钙钛矿纳米复合材料的异质结构中的界面耦合,主要控制多元样本的性能,尤其是在这种类型的二元结构系统中。该类复合材料中的界面响应是增强材料的磁电响应的关键特征。为此目的,在这里,我们使用容易湿化学技术在尖晶石相中替代Zn来合成一系列0.5bifeO_(3-0.)5NI_(0.5)CO_(0.5)FE_2O_4。使用X射线衍射进行的结构分析显示出两相的存在。通过现场发射扫描电子显微镜暴露具有尖锐和明显的晶界的球形凝聚的晶粒。元素轮廓被能量分散X射线光谱映射以确认这些复合材料的化学计量组成。通过振动样品磁力计分析饱和磁化强度和随着替代含量的增加的改善。此外,进行铁电研究以计算可恢复的能量和能量损失密度。磁极化性研究发现了多状态设备应用的这些复合材料的潜力。

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