Conversion of Hard to Soft Magnetic Ferrite Nanowires by Paramagnetic Shielding

Solids Pub Date : 2023-10-16 DOI:10.3390/solids4040019
Xian-Lin Zeng, Indujan Sivanesarajah, Uwe Hartmann
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引用次数: 1

Abstract

In this study, we investigate the magnetization behavior of coaxial nanowires fabricated through the sol-gel electrospinning method. Our analysis uncovers a significant reduction in coercivity for CoFe2O4 nanowires when BaTiO3 is used as the shell material, effectively transforming them from hard to soft magnetic. This intriguing behavior is attributed to the magnetization reversal effect at the interface between ferromagnetic and paramagnetic regions, and it is also observed in NiFe2O4 and Fe2O3 nanowires. Surprisingly, introducing a GdBa2Cu3O7 shell induces a similar effect. Additionally, we employ magnetic impedance measurements on the coaxial nanowires, unveiling their potential for magnetic field sensing applications.
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软磁铁氧体纳米线的顺磁屏蔽转换
在本研究中,我们研究了溶胶-凝胶静电纺丝法制备的同轴纳米线的磁化行为。我们的分析发现,当使用BaTiO3作为外壳材料时,CoFe2O4纳米线的矫顽力显著降低,有效地将其从硬磁转变为软磁。这种有趣的行为归因于铁磁区和顺磁区交界面的磁化反转效应,并且在NiFe2O4和Fe2O3纳米线中也观察到。令人惊讶的是,引入GdBa2Cu3O7壳层也会产生类似的效果。此外,我们对同轴纳米线进行了磁阻抗测量,揭示了它们在磁场传感应用中的潜力。
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