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Magnetic properties of NiO nano particles: Contributions of the antiferromagnetic and ferromagnetic subsystems in different magnetic field ranges up to 250 kOe

机译:NIO纳米颗粒的磁性特性:不同磁场中的反铁磁性和铁磁性子系统的贡献高达250 koe

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摘要

The magnetic properties of antiferromagnetic NiO nanoparticles prepared by thermal decomposition of nickel hydroxocarbonate are investigated. According to the data of magnetization measurements in fields of up to 250 kOe, the magnetic moment linearly grows in strong fields, which is caused by the contribution of the antiferromagnetically ordered nanoparticle core, and the antiferromagnetic susceptibility corresponds to that of bulk polycrystalline NiO. This allowed the antiferromagnetic and ferromagnetic contributions to the total magnetic response of a sample to be quantitatively determined. The latter occurs due to the incomplete spin compensation in an antiferromagnetic nanoparticle caused by defects on its surface. It is demonstrated that to correctly determine the superparamagnetic blocking temperature, it is necessary to take into account the antiferromagnetic susceptibility of the particle core.
机译:研究了通过热分解镍氢碳酸氢碳酸酯制备的反铁磁体NiO纳米粒子的磁性。 根据高达250只koe的磁化测量的数据,磁矩在强田间线性生长,这是由反铁磁性有序纳米颗粒核的贡献引起的,并且反铁磁性敏感性对应于散装多晶NiO的贡献。 这允许反铁磁性和铁磁贡献以定量地确定样品的总磁响应。 由于在其表面上的缺陷引起的缺陷引起的反铁磁性纳米粒子中的不完全旋转补偿,发生后者。 证明要正确确定超顺磁阻堵塞温度,有必要考虑颗粒芯的反铁磁性敏感性。

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  • 来源
    《Physics of the solid state》 |2017年第8期|共6页
  • 作者单位

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Fed Res Ctr KSC SB RAS Kirensky Inst Phys Krasnoyarsk 660036 Russia;

    Russian Acad Sci Boreskov Inst Catalysis Siberian Branch Novosibirsk 630090 Russia;

    Russian Acad Sci Boreskov Inst Catalysis Siberian Branch Novosibirsk 630090 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

  • 入库时间 2022-08-20 06:21:18

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