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首页> 外文期刊>New Journal of Chemistry >One pot synthesis of hard phase Nd2Fe_(14)B nanoparticles and Nd2Fe_(14)B/α-Fe nanocomposite magnetic materials
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One pot synthesis of hard phase Nd2Fe_(14)B nanoparticles and Nd2Fe_(14)B/α-Fe nanocomposite magnetic materials

机译:一锅法合成硬相Nd2Fe_(14)B纳米粒子和Nd2Fe_(14)B /α-Fe纳米复合磁性材料

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摘要

Nanophase materials with an average grain size in the range of 1 to 50 nm have attracted research interest for more than a decade since their physical properties are quite different from that of their bulk micron-sized counterparts. The properties of magnetic materials are highly dependent on its particle size. The synthesis of hard phase magnetic nanoparticles was carried out in a one pot reaction. By controlling the reaction conditions, the exchange coupling between the hard and soft phase in the hard/soft nanocomposite magnetic material has been studied. The reaction parameters, such as the ratio of the metallic precursors, reaction temperature and reduction process, play an important role in determining the shape and size of the material along with its magnetic properties. To produce the exchange coupling between hard and soft phases their particle size needs to be controlled very precisely, which can help to increase the interaction between the two phases. By controlling the ratio of precursors, the amount of soft phase of α-Fe was optimized for the synthesis in situ with the hard phase Nd2Fe_(14)B material.
机译:平均粒径在1至50 nm范围内的纳米相材料已经引起了十多年的研究兴趣,因为它们的物理性能与整体微米级的物理性能完全不同。磁性材料的特性高度取决于其粒径。硬相磁性纳米颗粒的合成是在一锅反应中进行的。通过控制反应条件,研究了硬/软纳米复合磁性材料中硬相和软相之间的交换耦合。反应参数,例如金属前体的比例,反应温度和还原过程,在确定材料的形状和尺寸以及其磁性时起着重要作用。为了在硬相和软相之间产生交换耦合,需要非常精确地控制它们的粒径,这可以帮助增加两相之间的相互作用。通过控制前驱体的比例,可以优化α-Fe软相的量,以便用硬相Nd2Fe_(14)B材料进行原位合成。

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