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The effect of microstructural features on the ferromagnetism of nickel oxide nanoparticles synthesized in a low-pressure arc plasma

机译:低压电弧等离子体中镍氧化镍纳米颗粒的微观结构特征的影响

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摘要

Nickel oxide nanoparticles were first synthesized by sputtering high-purity nickel in an oxygen plasma of a low-pressure arc discharge. The structure, morphology, and optical and magnetic properties of NiO nanoparticles were studied by XRD, TEM, FTIR, UV-VIS, and VSM. TEM images showed that the obtained NiO nanoparticles have a narrow particle size distribution and an average particle size of 12 nm. The XRD results and the processing of diffractograms by the Rietveld method showed that the obtained nanoparticles have a face-centered cubic lattice with an average particle size of 13 nm. With decreasing temperature, residual stresses increase and peaks corresponding to the superstructure appear. The band gap of NiO was determined from the optical absorption spectrum and amounted to 3.21 eV. Magnetic measurements showed that, at temperatures of 200 and 300 K, NiO nanoparticles, unlike bulk particles, exhibit ferromagnetic behavior, and at 5 K a magnetic hysteresis loop appears. Based on the studies, a dendritic model of the nanoparticle microstructure is proposed.
机译:首先通过在低压电弧放电的氧等离子体中溅射高纯度镍来合成氧化镍纳米颗粒。通过XRD,TEM,FTIR,UV-Vis和VSM研究了NiO纳米粒子的结构,形态和光学和光学性质。 TEM图像显示所获得的NiO纳米颗粒具有窄的粒度分布和12nm的平均粒度。通过RIETVELD方法的XRD结果和衍射图的处理表明,所得纳米颗粒具有平均粒径为13nm的面为中心的立方晶格。随着温度的降低,残余应力增加和对应于上层建筑的峰值。从光学吸收光谱确定NIO的带隙,并相当于3.21eV。磁性测量表明,在200和300K的温度下,与散装颗粒不同,表现出铁磁性行为,以及在5K处出现磁滞后回路。基于研究,提出了一种纳米粒子微观结构的树突模型。

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