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High spin-dependent tunneling magnetoresistance in magnetite powders made by arc-discharge

机译:电弧放电制备的磁铁矿粉中高自旋相关的隧穿磁阻

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摘要

We report the successful synthesis of ferrimagnetic magnetite powders made using an arc-discharge method in a partial oxygen atmosphere. X-ray and electron diffraction measurements show that the powders also contain some antiferromagnetic hematite and a small amount of FeO and Fe that has not oxidized. The Raman data show that there is a small fraction of ferrimagnetic maghemite that cannot be seen in the x-ray diffraction data. There is a wide particle size distribution where there are nanoparticles as small as 7 nm, larger faceted nanoparticles, and particles that are up to 25 μm in diameter. The saturation magnetization at high magnetic fields is ~74% of that found in the bulk magnetite, where the lower value is due to the presence of some antiferromagnetic hematite. The temperature dependence of the saturation magnetization changes at the Verwey transition temperature, and it has a power low dependence with an exponent of 3/2 at low temperatures and 2.23 at high temperatures above the Verwey transition temperature. Electronic transport measurements were made on a cold-pressed pellet and the electrical resistance had an exponential dependence on temperature that may be due to electrostatic charging during tunneling between small nanoparticles. A large magnetoresistance from spin-dependent tunneling between the magnetite particles was observed that reached -9.5% at 120 K and 8 T.
机译:我们报告了在部分氧气气氛下使用电弧放电方法成功制备的亚铁磁性磁铁矿粉的合成。 X射线和电子衍射测量表明该粉末还含有一些反铁磁赤铁矿以及少量未氧化的FeO和Fe。拉曼数据表明,在X射线衍射数据中看不到一小部分亚铁磁磁铁矿。粒径分布较宽,其中存在的纳米颗粒小至7 nm,较大的多面纳米颗粒,以及直径最大为25μm的颗粒。高磁场下的饱和磁化强度约为块状磁铁矿中的饱和磁化强度的74%,其中较低的值是由于存在一些反铁磁性的赤铁矿。饱和磁化强度的温度依赖性在Verwey转变温度下发生变化,并且具有较低的功率依赖性,低温下的指数为3/2,高于Verwey转变温度的高温下为2.23。在冷压的小球上进行电子传输测量,并且电阻与温度呈指数关系,这可能是由于在小纳米粒子之间隧穿期间的静电荷所致。观察到磁铁矿颗粒之间自旋依赖性隧穿产生的大磁阻在120 K和8 T时达到-9.5%。

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  • 来源
    《Journal of Applied Physics》 |2016年第12期|123905.1-123905.7|共7页
  • 作者单位

    The MacDiarmid Institute for Advanced Materials and Nanotechnology, SCPS, Victoria University of Wellington, PO Box 600, Wellington 6140, New Zealand,National Isotope Centre, GNS Science, PO Box 31312, Lower Hutt 5010, New Zealand;

    The MacDiarmid Institute for Advanced Materials and Nanotechnology, SCPS, Victoria University of Wellington, PO Box 600, Wellington 6140, New Zealand;

    National Isotope Centre, GNS Science, PO Box 31312, Lower Hutt 5010, New Zealand;

    Bio21 Institute, University of Melbourne, Victoria 3010, Australia;

  • 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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