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首页> 外文期刊>Nanoscale >Sandwiched CoFe2O4/SrFe11.5Al0.5O19/CoFe2O4 nanoparticles with exchange-coupling effect
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Sandwiched CoFe2O4/SrFe11.5Al0.5O19/CoFe2O4 nanoparticles with exchange-coupling effect

机译:夹CoFe2O4 / SrFe11.5Al0.5O19 / CoFe2O4纳米粒子与交换耦合作用

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Exchange-coupled hard/soft ferrite nanoparticles are prospective to squeeze out a part of expensive magnets based on rare-earth elements. However, the known exchange-coupled composite ferrite nanoparticles often suffer from the lack of a powerful enough hard magnetic core, high defectivity of magnetic phases, and a poor interface between them. Herein, we demonstrate the first efficient synthesis of sandwiched nanomagnets, which exhibit a pronounced exchange-coupling effect. This work is featured by the use of individual highly coercive strontium hexaferrite nanoplates prepared by a borate glass crystallization method as cores for the composite particles. The high crystal quality of the hexaferrite cores as the substrate promotes the epitaxial growth of CoFe2O4 layers on the 001 facets from an organic high-boiling solvent and results in the enhancement of the remanent magnetization and maximum energy product of the composite material. The results of this work open new prospects for the fabrication of multilayer oxide heterostructures with synergetic performance, which expands the applications of exchange-coupled composites.
机译:Exchange-coupled硬/软铁氧体纳米粒子未来的挤出的一部分吗基于稀土元素的昂贵的磁铁。然而,已知的exchange-coupled复合铁氧体纳米粒子经常遭受缺乏足够强大的磁芯,高defectivity磁阶段,和一个贫穷的它们之间的接口。第一个夹的有效合成nanomagnets,表现出明显的交换耦合作用。通过使用个人高度强制性锶hexaferrite nanoplates准备的硼酸盐玻璃结晶方法的核心复合粒子。hexaferrite核心的底物促进了CoFe2O4的外延生长层从有机高沸点在001面溶剂和增强的结果剩余磁化强度和最大的能源产品的复合材料。的制造工作开辟新的前景多层氧化物异质结构协同作用的扩展了应用程序的性能exchange-coupled复合材料。

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