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Building Nanocomposite Magnets by Coating a Hard Magnetic Core with a Soft Magnetic Shell

机译:通过用软磁壳涂覆硬磁芯来构建纳米复合磁体

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Controlling exchange coupling between hard magnetic and soft magnetic phases is the key to the fabrication of advanced magnets with tunable magnetism and high energy density. Using FePt as an example, control over the magnetism in exchange-coupled nanocomposites of hard magnetic face-centered tetragonal (fct) FePt and soft magnetic Co (or Ni, Fe2C) is shown. The dispersible hard magnetic fct-FePt nano-particles are first prepared with their coercivity (H_c) reaching 33 kOe. Then core/shell fct-FePt/Co (or Ni, Fe2C) nano-particles are synthesized by reductive thermal decomposition of the proper metal precursors in the presence of fct-FePt nanoparticles. These core/shell nanoparticles are strongly coupled by exchange interactions and their magnetic properties can be rationally tuned by the shell thickness of the soft phase. This work provides an ideal model system for the study of exchange coupling at the nanoscale, which will be essential for building superstrong magnets for various permanent magnet applications in the future.
机译:控制硬磁性相和软磁性相之间的交换耦合是制造具有可调磁性和高能量密度的高级磁体的关键。以FePt为例,显示了对硬磁面心四方(fct)FePt和软磁Co(或Ni,Fe2C)的交换耦合纳米复合材料中的磁性的控制。首先以其矫顽力(H_c)达到33 kOe的方式制备可分散的硬磁fct-FePt纳米颗粒。然后,通过在存在fct-FePt纳米粒子的情况下对适当的金属前体进行还原性热分解,合成核/壳fct-FePt / Co(或Ni,Fe2C)纳米粒子。这些核/壳纳米粒子通过交换相互作用牢固地耦合在一起,并且它们的磁性可以通过软相的壳厚度合理地调整。这项工作为研究纳米级的交换耦合提供了理想的模型系统,这对于将来为各种永磁体应用构建超强磁体至关重要。

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