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首页> 外文期刊>Journal of materials science >Synergistic effect of heat treatment on structural, magnetic and dielectric properties of spinel ferrite nanoparticles
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Synergistic effect of heat treatment on structural, magnetic and dielectric properties of spinel ferrite nanoparticles

机译:热处理对尖晶石型铁氧体纳米粒子的结构,磁性和介电性能的协同效应

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摘要

Polycrystalline Ni1-xCoxFe2O4 ferrite nanoparticles (NPs) have been prepared by evaporation method in the presence of egg white as a bio-template. In this paper, the results of microstructure, magnetic and dielectric behavior of heat treated Ni0.8Co0.2Fe2O4 at 600 degrees C, 750 degrees C and 900 degrees C are reported. The single phase cubic structure without the traces of secondary phases was confirmed by XRD. Sintering process promotes the rate of the crystallization process and the crystallite sizes were found to be in the range of 10-22nm. TEM micrograph revealed the shape of ferrite particles to be nearly spherical. The averageparticle size estimated from TEM is well matched with the crystallite size estimated from XRD. The nature of magnetization curves indicates the influence of core-shell interactions on the magnetic properties of the present ferrite system. The cation distribution estimated from XRD results excellently supports the structural behaviour. The observed increase in Co2+ ion concentration at B-site has to increase the magnetocrystalline anisotropy leading to increase in the coercivity, but opposite phenomenon was observed. A maximum value of 48emu/g was reported for saturation magnetization. The variation of particle size played a major role in dielectric and magnetic properties. The results are interpreted in terms of cation distribution and magnetocrystalline anisotropy presuming the possible core-shell interactions.
机译:在蛋白作为生物模板存在的情况下,通过蒸发法制备了多晶Ni1-xCoxFe2O4铁氧体纳米颗粒(NPs)。本文报道了在600℃,750℃和900℃条件下热处理的Ni0.8Co0.2Fe2O4的微观结构,磁性能和介电性能的结果。 XRD证实了没有次生相痕迹的单相立方结构。烧结过程促进了结晶过程的速率,并且发现微晶尺寸在10-22nm的范围内。 TEM显微照片显示,铁氧体颗粒的形状接近球形。由TEM估计的平均粒径与由XRD估计的微晶尺寸很好地匹配。磁化曲线的性质表明核壳相互作用对本铁氧体系统的磁性能的影响。根据XRD结果估计的阳离子分布很好地支持了结构行为。观察到的B位处Co 2+离子浓度的增加必须增加磁晶各向异性,从而导致矫顽力的增加,但是观察到相反的现象。据报道,饱和磁化强度最大值为48emu / g。粒径的变化在介电和磁性能中起主要作用。根据阳离子分布和磁晶各向异性来解释结果,并假定可能存在核壳相互作用。

著录项

  • 来源
    《Journal of materials science》 |2018年第24期|20968-20977|共10页
  • 作者单位

    Dr NGP Inst Technol Dept Phys Coimbatore 641048 Tamil Nadu India;

    Sasi Inst Technol & Engn Dept Phys Tadepalligudem 534101 India;

    Sasi Inst Technol & Engn Dept Phys Tadepalligudem 534101 India|Krishna Univ Dept Phys Machilipatnam 521001 India;

    Sri Krishna Coll Engn & Technol Dept Phys Coimbatore 641008 Tamil Nadu India;

    Govt Degree Coll Dept Phys Alamuru 533233 India;

    Bhabha Atom Res Ctr Tech Phys Div Bombay 400085 Maharashtra India;

    Akkineni Nageswara Rao Coll Dept Phys Gudivada 521301 India;

    Andhra Univ Dept Phys Visakhapatnam 530003 Andhra Pradesh India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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