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调控在高沸点有机溶剂中获得的夹心型六铁氧体/钴铁氧体交换耦合纳米复合材料的磁性能。

Tuning the magnetic properties of sandwiched hexaferrite/cobalt ferrite exchange-coupled nanocomposites obtained in high-boiling organic solvent.

作者信息

Nygaard Roy, Vasiliev Aleksandr N, Chen Jianing, Anokhin Evgeny O, Kozlyakova Ekaterina S, Kondratyeva Maria S, Trusova Svetlana V, Gorbachev Evgeny A, Trusov Lev A

机构信息

Faculty of Materials Science, Shenzhen MSU-BIT University Shenzhen 518172 China

Institute for Nuclear Research of Russian Academy of Sciences Moscow Troitsk 117312 Russia.

出版信息

RSC Adv. 2025 Sep 10;15(39):32758-32767. doi: 10.1039/d5ra04855a. eCollection 2025 Sep 5.

Abstract

Exchange-coupled magnetic nanocomposites present significant potential for advanced permanent magnets; however, scalable syntheses that maintain crystallographically coherent interfaces remain challenging. In this study, colloidal Al-substituted strontium hexaferrite nanoplates with average dimensions of 48 nm × 6 nm were covered with epitaxial cobalt ferrite nanolayers the thermolysis of metal acetylacetonates in hexadecane. By simply adjusting the precursor concentration, we create sandwich-like CoFeO/SrFeAlO/CoFeO particles with cobalt ferrite content ranging from 7 wt% to 58 wt%. The results from TEM investigations and theoretical calculations of the energy surface of the interface between CoFeO and SrFeAlO confirm the existence of a coherent {001} SrFeAlO ‖ {111} CoFeO interface. Magnetic measurements confirm that the composite particles behave as a single magnetic phase, exhibiting efficient exchange coupling. Magnetic properties reveal a continuous transition from hexaferrite-dominated magnetic behavior to cobalt ferrite-like characteristics as the proportion of the latter increases. This suggests the potential for precise control over the final magnetic properties of the nanocomposite. The proposed synthetic route is gram-scale and yields non-aggregated, uniformly covered nanomagnets with optimal structural and spin coupling between the constituent phases.

摘要

交换耦合磁性纳米复合材料在先进永磁体方面具有巨大潜力;然而,维持晶体学相干界面的可扩展合成仍然具有挑战性。在本研究中,通过金属乙酰丙酮盐在十六烷中的热解,平均尺寸为48 nm×6 nm的胶体铝取代六方铁酸锶纳米片被外延钴铁氧体纳米层覆盖。通过简单地调整前驱体浓度,我们制备出了钴铁氧体含量在7 wt%至58 wt%之间的三明治状CoFeO/SrFeAlO/CoFeO颗粒。透射电子显微镜(TEM)研究结果以及CoFeO与SrFeAlO之间界面能量表面的理论计算证实了存在相干的{001} SrFeAlO ‖ {111} CoFeO界面。磁性测量证实复合颗粒表现为单一磁相,展现出有效的交换耦合。磁性特性表明,随着钴铁氧体比例的增加,从六方铁氧体主导的磁行为到类似钴铁氧体的特性存在连续转变。这表明对纳米复合材料最终磁性能进行精确控制具有潜力。所提出的合成路线是克级规模的,可制备出非聚集、均匀覆盖的纳米磁体,其组成相之间具有最佳的结构和自旋耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b40/12421872/2a7523789a76/d5ra04855a-f1.jpg

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