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首页> 外文期刊>RSC Advances >Crystal chemistry and single-phase synthesis of Gd3+ substituted Co-Zn ferrite nanoparticles for enhanced magnetic properties
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Crystal chemistry and single-phase synthesis of Gd3+ substituted Co-Zn ferrite nanoparticles for enhanced magnetic properties

机译:Gd3 +取代的Co-Zn铁氧体纳米粒子的晶体化学和单相合成,用于增强磁性

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摘要

Rare earth (RE) ions are known to improve the magnetic interactions in spinel ferrites if they are accommodated in the lattice, whereas the formation of a secondary phase leads to the degradation of the magnetic properties of materials. Therefore, it is necessary to solubilize the RE ions in a spinel lattice to get the most benefit. In this context, this work describes the synthesis of Co-Zn ferrite nanoparticles and the Gd3+ doping effect on the tuning of their magnetic properties. The modified sol-gel synthesis approach offered a facile way to synthesize ferrite nanoparticles using water as the solvent. X-ray diffraction with Rietveld refinement confirmed that both pure Co-Zn ferrite and Gd3+ substituted Co-Zn ferrite maintained single-phase cubic spinel structures. Energy dispersive spectroscopy was used to determine the elemental compositions of the nanoparticles. Field and temperature dependent magnetic characteristics were measured by employing a vibration sample magnetometer in field cooled (FC)/zero field cooled (ZFC) modes. Magnetic interactions were also determined by Mossbauer spectroscopy. The saturation magnetization and coercivity of Co-Zn ferrite were improved with the Gd3+ substitution due to the Gd3+ (4f(7))-Fe3+ (3d(5)) interactions. The increase in magnetization and coercivity makes these Gd3+ substituted materials applicable for use in magnetic recording media and permanent magnets.
机译:已知稀土(RE)离子在晶格中容纳在晶格中,以改善尖晶石铁氧体中的磁相互作用,而二次相的形成导致材料的磁性的劣化。因此,必须溶解尖晶石晶格中的再冷却以获得最大的好处。在这种情况下,该工作描述了对它们磁性性能的调谐的Co-Zn铁氧体纳米颗粒的合成和GD3 +掺杂效应。改性溶胶 - 凝胶合成方法提供了一种易于使用水作为溶剂合成铁氧体纳米颗粒的方法。具有RIETVELD细化的X射线衍射证实,纯CO-ZN铁氧体和GD3 +取代的CO-ZN铁氧体保持单相立方尖晶石结构。能量分散光谱法用于确定纳米颗粒的元素组合物。通过采用现场冷却(FC)/零场冷却(ZFC)模式的振动样品磁力计来测量现场和温度相关的磁特性。磁共振分光镜也确定磁性相互作用。由于GD3 +(4F(7))-FE3 +(3D(5))相互作用,GD3 +取代改善了Co-Zn铁素体的饱和磁化和矫顽力。磁化和矫顽力的增加使得这些GD3 +取代材料适用于磁记录介质和永磁体。

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  • 来源
    《RSC Advances 》 |2018年第44期| 共10页
  • 作者单位

    Arts Commerce &

    Sci Coll Dept Phys Satral 413711 MS India;

    SKM Mat Sci Res Lab Osmanabad 413613 MS India;

    Yashwantrao Chavan Mahavidyalaya Dept Phys Osmanabad 413601 MS India;

    Dnyanopasak Shikshan Mandals Arts Commerce &

    Sci Jintur 431509 India;

    Dnyanopasak Shikshan Mandals Arts Commerce &

    Sci Jintur 431509 India;

    Univ New South Wales Sch Mat Sci &

    Engn Sydney NSW 2052 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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