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Controlled magnetic properties of Ni nanoparticles embedded in polyimide films

机译:嵌入聚酰亚胺薄膜中的镍纳米粒子的受控磁性能

摘要

We have studied the magnetic properties of Ni nanoparticles incorporated in polyimide films using dc- and ac-magnetization measurements. Transmission electron microscopy images reveal that both the mean particle diameter (d_ave) and the volume fraction of particles (η_ave) in the composite layer can be controlled independently. In a series of samples with fixed d_ave, the system with the lowest η_ave behaves magnetically as an ensemble of noninteracting superparamagnets. With increasing η_ave, typical signatures of the dipole-dipole interparticle interaction, such as an enhanced blocking temperature, are observed. In dense systems, with a particle concentration above the threshold for geometrical percolation, the magnetic response is ferromagnetic due to the exchange interaction between particles in direct contact.
机译:我们已经使用直流磁化和交流磁化测量方法研究了掺入聚酰亚胺薄膜中的镍纳米粒子的磁性。透射电子显微镜图像显示,复合层中的平均粒径(d_ave)和颗粒的体积分数(η_ave)均可独立控制。在一系列具有固定d_ave的样本中,具有最低η_ave的系统在磁性上表现为无相互作用的超顺磁体的集合。随着η_ave的增加,观察到偶极-偶极粒子间相互作用的典型特征,例如增强的阻断温度。在密集的系统中,粒子浓度高于几何渗滤阈值时,由于直接接触的粒子之间存在交换相互作用,因此磁响应是铁磁性的。

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