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首页> 外文期刊>ACS nano >Exchange coupling interaction in L 1_0-FePd/α-Fe nanocomposite magnets with large maximum energy products
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Exchange coupling interaction in L 1_0-FePd/α-Fe nanocomposite magnets with large maximum energy products

机译:最大能量积较大的L 1_0-FePd /α-Fe纳米复合磁体中的交换耦合相互作用

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摘要

Nanocomposite magnets (NCMs) consisting of hard and soft magnetic phases are expected to be instrumental in overcoming the current theoretical limit of magnet performance. In this study, structural analyses were performed on L1 _0-FePd/α-Fe NCMs with various hard/soft volume fractions, which were formed by annealing Pd/γ-Fe_2O_3 heterostructured nanoparticles and pure Pd nanoparticles. The sample with a hard/soft volume ratio of 82/18 formed by annealing at 773 K had the largest maximum energy product (BH_(max) = 10.3 MGOe). In such a sample, the interface between the hard and soft phases was coherent and the phase sizes were optimized, both of which effectively induced exchange coupling. This exchange coupling was directly observed by visualizing the magnetic interaction between the hard and soft phases using a first-order reversal curve diagram, which is a valuable tool to improve the magnetic properties of NCMs.
机译:预期由硬磁性相和软磁性相组成的纳米复合磁体(NCM)有助于克服磁体性能的当前理论极限。在这项研究中,对具有各种硬/软体积分数的L1 _0-FePd /α-FeNCM进行了结构分析,这是通过对Pd /γ-Fe_2O_3异质结构纳米粒子和纯Pd纳米粒子进行退火而形成的。通过在773 K下退火形成的硬/软体积比为82/18的样品具有最大的最大能量积(BH_(max)= 10.3 MGOe)。在这样的样品中,硬相和软相之间的界面是连贯的,并且相尺寸得到了优化,两者均有效地诱导了交换耦合。通过使用一阶反转曲线图可视化硬相和软相之间的磁性相互作用,可以直接观察到这种交换耦合,这是改善NCM磁性的有价值的工具。

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