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首页> 外文期刊>Journal of Materials Science >Correlation between magnetic properties and cationic distribution of Zn0.85-x Ni (x) Mg0.05Cu0.1Fe2O4 nano spinel ferrite: effect of Ni doping
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Correlation between magnetic properties and cationic distribution of Zn0.85-x Ni (x) Mg0.05Cu0.1Fe2O4 nano spinel ferrite: effect of Ni doping

机译:Zn0.85-X Ni(X)Mg0.05Cu0.1F2040.1F204孔尖晶石铁氧体的磁性特性与阳离子分布的相关性:Ni掺杂的影响

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摘要

The correlation among magnetic properties and cationic distribution of Ni-doped Zn0.85-x Ni (x) Mg0.05Cu0.1Fe2O4 (x = 0.00, 0.17, 0.34, 0.51, 0.85) ferrite, synthesized using sol-gel auto-combustion process is studied by X-ray diffraction (XRD), scanning electron microscope (SEM), energy-dispersive X-ray analysis (EDAX), and magnetic measurements. XRD patterns revealed a pure phase spinel ferrite structure for all samples with Scherrer's grain diameter (D) ranging from 33.55 to 42.07 nm. Experimental, theoretical lattice constant (a (exp.) , a (th.)), specific surface area (S), and the distances between cations (M-e-M-e) (b, c, d, e, f) of the annealed Zn-Ni-Mg-Cu ferrite decrease with the increase in Ni doping. Elemental analysis, particle diameter, and surface morphology were examined by EDAX and SEM. Coercivity (H (c)) and saturation magnetization (M (s)) of Zn-Ni-Mg-Cu ferrite ranges between 0.97-167.5 Oe and 47.63-136.93 Am-2 kg(-1), respectively, signifying the soft character of annealed samples. Magnetic parameters such as H (c), magnetocrystalline anisotropy (K (1)), remanence (M (r)), and reduced remanent magnetization (M (r)/M (s)) increase up to x = 0.51 and then reduce thereafter with Ni doping. Particle size dependence of H (c) reveals superparamagnetic, single domain, and multi-domain nature of the studied ferrite. Observed similar trend of M (s), N,el/experimental magnetic moment (n (B) (N) , n (B) (e) ) with Ni content (x) follows the N,el's two-sublattice model of ferrimagnetism and is accredited to the cationic distribution and B-B exchange interaction. All these results establish a strong connection between magnetic properties and cationic distribution of Zn0.85-x Ni (x) Mg0.05Cu0.1Fe2O4 ferrite.
机译:Ni掺杂Zn0.85-X Ni(X)Mg0.05Cu0.1F20.1f20.1f20.1f20.1f201(x = 0.00,0.17,0.34,0.51,0.85)铁氧体的相关性和阳离子分布的相关性,用溶胶 - 凝胶自燃方法合成由X射线衍射(XRD),扫描电子显微镜(SEM),能量分散X射线分析(eDAX)和磁性测量来研究。 XRD图案揭示了纯相尖晶石铁氧体结构,用于所有样品,什叶帘的粒径(d)为33.55至42.07nm。实验性,理论晶格常数(a(exp.),(th。)),比表面积和退火的zn-的阳离子(meme)(b,c,d,e,f)之间的距离Ni-Mg-Cu铁氧体随着Ni掺杂的增加而降低。通过EDAX和SEM检查元素分析,粒径和表面形态。 Zn-Ni-Mg-Cu铁氧体的矫顽力(H(c))和饱和磁化强度分别在0.97-167.5 OE和47.63-136.93AM-2kg(-1)之间的范围内,表示柔软的性格退火样品。磁性参数如H(c),磁晶各向异性(K(1)),剩磁(M(r)),并降低剩磁磁化(m(r)/ m(s))增加到x = 0.51,然后减少此后与Ni掺杂。 H(c)的粒度依赖性揭示了研究的铁氧体的超顺磁性,单结构域和多域性质。观察到M(s),n,el /实验磁矩(n(b)(n),n(b)(e))与ni含量(x)的类似趋势遵循n,El的亚居星的二分离型模型并且被认证到阳离子分布和BB交换相互作用。所有这些结果在磁性性能和阳离子分布之间建立了强大的连接,Zn0.85-x Ni(x)Mg0.05cu0.1f20.1fe2O4铁素体的阳离子分布。

著录项

  • 来源
    《Journal of Materials Science》 |2017年第6期|共11页
  • 作者

    Kane S. N.; Satalkar M.;

  • 作者单位

    DA Univ Sch Phys Magnet Mat Lab Khandwa Rd Campus Indore 452001 Madhya Pradesh India;

    DA Univ Sch Phys Magnet Mat Lab Khandwa Rd Campus Indore 452001 Madhya Pradesh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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