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首页> 外文期刊>Journal of magnetism and magnetic materials >Impact of strontium substitution on the structural, magnetic, dielectric and ferroelectric properties of Ba_(1-χ)Sr)χFe_(11)Cr_1O_19(χ = 0.0-0.8) hexaferrites
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Impact of strontium substitution on the structural, magnetic, dielectric and ferroelectric properties of Ba_(1-χ)Sr)χFe_(11)Cr_1O_19(χ = 0.0-0.8) hexaferrites

机译:锶取代对Ba_(1-Ⅵ)Sr的结构,磁,介电和铁电性能的影响)χFe_(11)Cr_1O_19(χ= 0.0-0.8)六发蛋白

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摘要

Strontium substituted barium hexaferrites i.e., Ba_(1-χ)Sr)χFe_(11)Cr_1O_19( withχ = 0.0-0.8 were prepared via co-precipitation technique. Single-phase magnetoplumbite structure was confirmed for all samples by X-ray diffraction, whereas scanning electron microscopy showed the variation in microstructure on Sr~(2+) substitution. Magnetic measurements revealed that the substitution causes prominent enhancement in saturation magnetization and coercive field for x = 0.4 sample. However, under same condition, decrease in real part of dielectric permittivity, dielectric loss tangent and ac conductivity were observed by impedance spectroscopy, while these parameters started to increase for x > 0.4. The dielectric permittivity exhibited frequency-dependent dispersive behavior due to Maxwell-Wagner interfacial polarization whereas weak ferroelectric hysteresis loops were obtained for the prepared samples. Moreover, it was found that the Sr~(2+) substitution substantially enhanced the resistive properties which is elucidated in term of localization of charge carrier's mobility due to reduction in Fe~(3+) — O — Fe~(2+) network and microstructural variations. Here, it is proposed that x = 0.4 sample exhibits maximum magnetization (64 emu/g), moderate real part of dielectric permittivity at low frequency (> 103), diminished dielectric loss tangent (~0.05) and colossal value of resistance (~10~(10) Ω) which makes this material interesting for high frequency applications.
机译:锶取代的六升级粒细胞IE,Ba_(1-χ)Sr)χFe_(11)Cr_1O_19(通过共沉淀技术制备= = 0.0-0.8。通过X射线衍射确认所有样品的单相磁压石结构,而扫描电子显微镜显示SR〜(2+)替代的微观结构的变化。磁测量表明,取代导致饱和磁化和X = 0.4样品的矫顽磁场中的突出增强。但是,在相同的条件下,电介质的实际部分减少阻抗光谱观察介电常数,介电损耗切线和交流电导率,而这些参数开始增加x> 0.4。由于Maxwell-Wagner界面极化,介电介电常数表现出频率依赖性的分散行为,而获得弱铁电磁滞回路制备的样品。此外,发现Sr〜(2+)取代大大提高了电阻由于减少Fe〜(3+)-FE〜(2+)网络和微观结构变化,在电荷载体迁移率定位期间阐明的性质。这里提出了X = 0.4样品表现出最大磁化强度(64 emu / g),低频(> 103)中适度的介电介电常数的实体部分,介电损耗切线减少(〜0.05)和致力巨大值(〜10 〜(10)ω)这使得这种材料对高频应用有趣。

著录项

  • 来源
    《Journal of magnetism and magnetic materials》 |2020年第4期|166414.1-166414.10|共10页
  • 作者单位

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan;

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan;

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan Key Lab of Material Physics Department of Physics and Engineering Zhengzhou University Zhengzhou PR China;

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan;

    Polymer Composite Group Physics Division Directorate of Science PINSTECH P.O. Nilore Islamabad Pakistan;

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan;

    Functioned Materials Lab Department of Physics Air University PAF Complex E-9 Islamabad Pakistan;

    Key Lab of Material Physics Department of Physics and Engineering Zhengzhou University Zhengzhou PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hexaferrites; Co-precipitation; Porosity; Magnetic properties; Impedance;

    机译:六发士;共沉淀;孔隙率;磁性;阻抗;

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