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Ferroelectric and magnetic properties of Nd-doped Bi4 − xFeTi3O12 nanoparticles prepared through the egg-white method

机译:蛋清法制备的掺钕Bi4-xFeTi3O12纳米粒子的铁电和磁性

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摘要

Multiferroic behavior of Bi4 − xNdxFeTi3O12 (0.0 ≤ × ≤ 0.25, × = 0.05) ceramic nanoparticles prepared through the egg-white method was investigated. The dielectric properties of the samples show normal behavior and are explained in the light of space charge polarization. Room temperature polarization-electric field (P-E) curves show that the samples are not saturated with maximum remanence polarization, Pr = 0.110 μC/cm2, and a relatively low coercive field, Ec = of 7.918 kV/cm, at an applied field of 1 kV/cm was observed for 5% Nd doping. The room temperature M-H hysteresis curve shows that the samples exhibit intrinsic antiferromagnetism with a weak ferromagnetism. These properties entitle the grown nanoparticles of BNFT as one of the few multiferroic materials that exhibit decent magnetization and electric polarization.
机译:研究了通过蛋清法制备的Bi4-xNdxFeTi3O12(0.0≤×≤0.25,×= 0.05)陶瓷纳米粒子的多铁性行为。样品的介电性能显示正常行为,并根据空间电荷极化进行了解释。室温极化电场(PE)曲线表明,样品的最大剩磁极化强度Pr = 0.110μC/ cm 2 ,矫顽力相对较低,Ec =为7.918 kV /在5%的Nd掺杂下,在1 cmkV / cm的施加电场下,观察到了50 cm的电流。室温M-H磁滞曲线表明,样品表现出固有的反铁磁性和弱铁磁性。这些特性使生长的BNFT纳米颗粒成为少数几种表现出良好磁化强度和电极化性能的多铁性材料之一。

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