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铁掺杂氧化铜纳米颗粒中的室温铁磁性

Room temperature ferromagnetism in Fe-doped CuO nanoparticles.

作者信息

Layek Samar, Verma H C

机构信息

Department of Physics, Indian Institute of Technology, Kanpur 208016, India.

出版信息

J Nanosci Nanotechnol. 2013 Mar;13(3):1848-53. doi: 10.1166/jnn.2013.7110.

Abstract

The pure and Fe-doped CuO nanoparticles of the series Cu(1-x)Fe(x)O (x = 0.00, 0.02, 0.04, 0.06 and 0.08) were successfully prepared by a simple low temperature sol-gel method using metal nitrates and citric acid. Rietveld refinement of the X-ray diffraction data showed that all the samples were single phase crystallized in monoclinic structure of space group C2/c with average crystallite size of about 25 nm and unit cell volume decreases with increasing iron doping concentration. TEM micrograph showed nearly spherical shaped agglomerated particles of 4% Fe-doped CuO with average diameter 26 nm. Pure CuO showed weak ferromagnetic behavior at room temperature with coercive field of 67 Oe. The ferromagnetic properties were greatly enhanced with Fe-doping in the CuO matrix. All the doped samples showed ferromagnetism at room temperature with a noticeable coercive field. Saturation magnetization increases with increasing Fe-doping, becomes highest for 4% doping then decreases for further doping which confirms that the ferromagnetism in these nanoparticles are intrinsic and are not resulting from any impurity phases. The ZFC and FC branches of the temperature dependent magnetization (measured in the range of 10-350 K by SQUID magnetometer) look like typical ferromagnetic nanoparticles and indicates that the ferromagnetic Curie temperature is above 350 K.

摘要

通过使用金属硝酸盐和柠檬酸的简单低温溶胶 - 凝胶法,成功制备了系列Cu(1 - x)Fe(x)O(x = 0.00、0.02、0.04、0.06和0.08)的纯CuO和铁掺杂CuO纳米颗粒。对X射线衍射数据进行的Rietveld精修表明,所有样品均为单相,结晶为空间群C2/c的单斜结构,平均晶粒尺寸约为25 nm,且晶胞体积随铁掺杂浓度的增加而减小。透射电子显微镜图像显示,4%铁掺杂的CuO为近球形团聚颗粒,平均直径为26 nm。纯CuO在室温下表现出弱铁磁行为,矫顽场为67 Oe。在CuO基体中进行铁掺杂后,铁磁性能大大增强。所有掺杂样品在室温下均表现出铁磁性,且具有明显的矫顽场。饱和磁化强度随铁掺杂量的增加而增加,在4%掺杂时达到最高,然后在进一步掺杂时降低,这证实了这些纳米颗粒中的铁磁性是本征的,并非由任何杂质相引起。温度依赖磁化强度的零场冷却(ZFC)和场冷却(FC)分支(通过超导量子干涉仪磁强计在10 - 350 K范围内测量)看起来像典型的铁磁纳米颗粒,表明铁磁居里温度高于350 K。

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