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Enhancement of multiferroic properties and unusual magnetic phase transition in Eu doped bismuth ferrite nanoparticles

机译:欧盟掺杂铋铁氧体纳米粒子中的多体性特性和异常磁相过渡的增强

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摘要

Improvement of the multiferroic properties of bismuth ferrite is essential for its practical application and commercialization in the growing field of spintronics. An unusual magnetic phase transition with the highest coercive field and excellent multiferroic behaviour has been observed in bismuth ferrite nanoparticles with an average size of 27 nm by proper substitution of bismuth (Bi3+) ions with europium (Eu3+) ions. The X-ray diffraction (XRD) result confirms that with up to 10% Eu substitution, the segregation of any phase other than BiFeO3 does not occur. A detailed structural analysis suggests that the substitution of Bi ions by Eu ions leads to lattice distortion and modification of the lattice parameters, micro-strain and crystallite size. The dc activation energy has been calculated from the Arrhenius relation and found to increase with an increase in Eu content. The dielectric permittivity of the sample increases with an increase in the concentration of Eu. Magnetic measurement depicts the exchange bias effect and surface phase transition near 100 K for the polycrystalline Eu-doped BiFeO3 (Bi(1-x)EuxFeO(3)) samples. The room temperature ferroelectric and magnetodielectric measurements indicate that the polarization and magnetodielectric constant increases significantly by virtue of Eu doping. All the observations suggested the materials to be potential candidates in the emerging field of spintronics.
机译:铁酸铋的多重铁性的改善是自旋电子学的发展领域的实际应用和商业化至关重要。具有最高的矫顽场和优良的多重铁性的行为不寻常的磁相转变已经由铋的适当的取代(BI3 +)铕(Eu3 +的)离子离子铋铁氧体纳米颗粒观察到的为27nm的平均尺寸。的X射线衍射(XRD)结果证实了具有高达10%的Eu取代,不会发生比其他的BiFeO 3任一相的偏析。的详细结构的分析表明,Bi离子的通过Eu的离子导致晶格畸变和晶格参数,微应变和微晶尺寸的修改的替换。直流活化能已经从阿列纽斯关系计算发现,以增加与增加Eu含量。样品的介电常数的增加Eu的浓度增加而增加。磁测量描绘接近100 K为多晶Eu掺杂的BiFeO 3的(Bi(1-x)的EuxFeO(3))的样品交换偏置效应和表面相变。室温铁电和magnetodielectric测量表明,显著凭借铕掺杂的偏振和magnetodielectric常数增加。所有意见建议的材料在自旋电子学的新兴领域的潜在候选人。

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  • 来源
    《New Journal of Chemistry》 |2017年第19期|共7页
  • 作者单位

    Natl Inst Technol Dept Phys Durgapur 713209 India;

    Natl Inst Technol Dept Phys Durgapur 713209 India;

    Indian Assoc Cultivat Sci Nanosci Grp Energy Res Unit Kolkata 700032 India;

    Indian Assoc Cultivat Sci Nanosci Grp Energy Res Unit Kolkata 700032 India;

    Natl Inst Technol Dept Phys Durgapur 713209 India;

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  • 正文语种 eng
  • 中图分类 化学;
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