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Nanostructure, composition and magnetic properties in soft and hard Co-Ni nanoparticles: The effect on the magnetic anisotropy

机译:硬和硬Co-Ni纳米颗粒的纳米结构,组成和磁性能:对磁各向异性的影响

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The magnetic properties of Co-Ni alloys nanoparticles with composition Co80Ni20 and Co50Ni50 and dispersed in a silica matrix are investigated. The effective magnetic anisotropies are evaluated from the analysis of the temperature dependence of the zero-field-cooling magnetizations and from the hysteresis loops at 3 K considering the coherent rotation model. The results show that, on the contrary of what expected, Co80Ni20 nanoparticles have smaller anisotropy than the Co50Ni50 one showing that the magnetic properties of the system can be tuned from soft to hard by simply adjusting the alloy composition. This behaviour can be explained on the basis of the different size and composition of the two systems. Moreover we found that the evaluation of the anisotropy constant depends on the experimental method adopted due to the modifications by interparticle dipolar interactions of the reversal process.
机译:研究了组成为Co80Ni20和Co50Ni50并分散在二氧化硅基质中的Co-Ni合金纳米粒子的磁性能。通过对零场冷却磁化强度的温度依赖性进行分析,并考虑相干旋转模型,可以从3 K下的磁滞回线评估有效磁各向异性。结果表明,与预期相反,Co80Ni20纳米粒子的各向异性小于Co50Ni50纳米粒子,这表明可以通过简单地调节合金成分将系统的磁性能从软调到硬。可以基于两个系统的不同大小和组成来解释此行为。此外,我们发现各向异性常数的评估取决于所采用的实验方法,这是由于逆过程的粒子间偶极相互作用所引起的。

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