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Magnetic properties of FeCo-iron oxide core-shell nanoparticles investigated through first order reversal studies

机译:通过一阶反转研究研究了氧化铁氧化铁核心壳纳米粒子的磁性

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摘要

Core-shell magnetic nanoparticles exhibit exchange bias, whereas the magnitude of the exchange bias field is influenced by various factors that are still under investigation. We present a detailed analysis of the magnetic behavior in Fe- and Co-rich FeCo particles with a ferrimagnetic oxide shell. The as-synthesized alloys, with an average particle size above 150 nm, show high saturation magnetization and exhibit multidomain nature. The magnetic behavior has been analyzed through first order reversal studies at room temperature, and low temperature (15 K) for the as-synthesized and size-reduced alloys. The size-reduced alloys exhibit exchange bias that enhances with decreasing average particle size and found to be maximum for the Co-rich FeCo. First order reversal curve (FORC) studies could resolve the reversible, irreversible magnetization components, and magnetostatic interactions. The low-temperature field cooled measurements expose random field bias acting at the interfaces. The studies reveal that FORC could be utilized to obtain information about particle size and its distribution dependent magnetic behavior in core-shell nanostructures.
机译:核心壳磁性纳米粒子表现出交换偏压,而交换偏置场的大小受到仍在调查的各种因素的影响。我们在具有亚铁磁性氧化物壳的Fe-富含FECO颗粒中的磁性行为的详细分析。作为150nm以上的平均粒度的和合成的合金,显示出高饱和磁化强度并表现出多畴自然。通过在室温下的一定顺序反转研究和低温(15 k),用于合成和尺寸减少合金的磁性行为。尺寸减小的合金表现出换偏偏压,其增强随着平均粒度的降低,并且发现为富含富含的FECO最大。第一阶逆转曲线(Forc)研究可以解决可逆,不可逆的磁化组件和磁静态相互作用。低温场冷却测量暴露在接口处的随机场偏压。研究表明,Forc可用于获得有关粒径及其分布在核心 - 壳纳米结构中的分布依赖性磁性的信息。

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