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首页> 外文期刊>Physica, B. Condensed Matter >Defect induced ferromagnetism in NiO nanocrystals: Insight from experimental and DFT plus U study
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Defect induced ferromagnetism in NiO nanocrystals: Insight from experimental and DFT plus U study

机译:NIO纳米晶体中的缺陷诱导的铁磁性:实验和DFT加上的洞察力

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We investigate the defects induced magnetic properties of NiO nanocrystals prepared by mechanical alloying ball milling process. The average crystallite size reduces to similar to 12 nm after 40 hours of milling but the face centered cubic structure is stable both in pure and milled NiO powders. The unmilled pure NiO is anti -ferromagnetic in nature, whereas the as-milled nanoparticles are ferromagnetic at room temperature with saturation magnetization reaching a maximum of 0.85 emu/g. X-ray photoelectrons spectroscopy (XPS) shows two distinct peaks at 854.2 and 856.1 eV specifically related to the typical Ni-O bonds from Ni2+ and Ni3+ respectively. This is clearly supports the presence of non-stoichiometry in the milled samples due to decrease in Ni2+-O2--Ni2+ spin correlation length caused by defects. These defects and crystallinity are characterized by Raman spectra which shows that the two-magnon band disappears, one-phonon (1P) longitudinal optical (LO) band broadens, two-phonon (2P) LO band exhibits red-shift and disappears eventually with decreasing of particle size. Magnetic hysteresis (M-H) loops reveals the ferro-magnetic nature of NiO nanocrystals. Considering these defects, we have also investigated the electronic and magnetic properties systematically within the framework of density functional theory. Our results suggest that the vacancies created by only oxygen as well as both nickel and oxygen are largely responsible for ferro-magnetism in nanoscale NiO powders.
机译:我们研究了通过机械合金球铣削方法制备的NiO纳米晶体的缺陷诱导的磁性。在铣削40小时后,平均微晶尺寸降低至相似的12nm,但在纯和研磨的NiO粉末中,面向中心的立方结构稳定。 Infillated纯NIO在自然界中是抗 - ,而AS-MICRED纳米颗粒在室温下是铁磁性,饱和磁化强度最大为0.85 emu / g。 X射线光电子光谱(XPS)显示出854.2和856.1 EV的两个不同的峰,分别与Ni2 +和Ni3 +的典型Ni-O键具特异性。由于缺陷引起的Ni2 + -O2 - Ni2 +旋转相关长度降低,这显然在研磨样品中存在非化学计量的存在。这些缺陷和结晶度的特征在于拉曼光谱,表明双氧元带消失,一个声子(1P)纵向光学(LO)频带拓宽,两个声子(2P)LO带呈现红色偏移并最终消失粒径。磁滞(M-H)环露出NiO纳米晶体的铁磁性。考虑到这些缺陷,我们还系统地在密度函数理论框架内系统地调查了电子和磁性。我们的研究结果表明,仅由氧气和镍和氧气产生的空缺在很大程度上对纳米烃粉末中的铁磁性负责。

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