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Synthesis and structural, magnetic characterization of nanocrystalline Z(1-x)Co(x)O diluted magnetic semiconductors (DMS) synthesized by combustion reaction

机译:燃烧反应合成的纳米晶Z(1-X)Co(X)O稀释磁半导体(DMS)的合成和结构,磁性表征

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摘要

Nanocrystalline Co+2 doped Z(1-x)Co(x)O, where x = 0.02, 0.03, 0.07 and 0.1 mol of Co+2 diluted magnetic semiconductors (DMS), were synthesized by combustion reaction for spintronic applications. The effects of Co+2 ion doping on the structural, morphological and magnetic properties of ZnO ware investigated. The products of the reactions were characterized by X-ray diffraction (XRD), nitrogen adsorption (BET), transmission electron microscopy (TEM), and magnetic measurements (VSM). XRD spectra data revealed the formation of a ZnO phase (removed text), indicating that the synthesis was efficient in diluting the Co+2 ions in the ZnO lattice. Increasing the Co2+ ion concentrations reduced the maximum reaction and ignition temperature and contributed to reduce crystallite and particle sizes. The samples showed the typical behavior of soft magnetic materials at all the Co2+ concentrations evaluated here. The Curie temperature (Tc) was higher than room temperature at all the Co2+ concentrations.
机译:纳米晶二氧化碳Z(1-X)CO(X)O,其中X = 0.02,0.03,0.07和0.1mol的Co + 2稀磁半导体(DMS)被用于旋转式应用的燃烧反应合成。 CO + 2离子掺杂对Zno Ware研究的结构,形态学和磁性的影响。反应的产物以X射线衍射(XRD),氮吸附(BET),透射电子显微镜(TEM)和磁测量(VSM)为特征。 XRD光谱数据显示ZnO相的形成(被去除的文本),表明合成在ZnO晶格中稀释CO + 2离子的合成有效。增加CO 2 +离子浓度降低了最大反应和点火温度,并有助于减少微晶和颗粒尺寸。样品显示在此处评估的所有CO 2 +浓度的软磁材料的典型行为。在所有CO 2 +浓度下,居里温度(Tc)高于室温。

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