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Synthesis, structural, magnetic and optical properties of nanocrystalline ZnFe_2O_4

机译:纳米ZnFe_2O_4的合成,结构,磁性和光学性质

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Nanocrystalline zinc ferrite (ZnFe_2O_4) is synthesized by high-energy ball-milling after 12 h from a powders mixture of zinc oxide (ZnO) and hematite (α-Fe_2O_3) with balls to powders mass ratio of 20:1. X-ray diffraction, vibrating sample magnetometer (VSM), the M?ssbauer spectrometry and photoluminescence (PL) are used to characterize the samples. Rietveld analysis and VSM measurements show that the powder has an average crystallites size of 10 nm and a ferrimagnetic behavior with a saturation magnetization of 30 emu/g. After annealing at 700 °C, the lattice parameter reduces from 8.448 to 8.427 ? and the sample transforms into a superparamagnetic behavior, which was confirmed as well by the room temperature M?ssbauer spectrometry. Different mechanisms to explain the obtained results and the correlation between magnetism and structure are discussed. Finally, the broadband visible emission band is observed in the entire PL spectrum and the estimated energy band gap is about 2.13 eV.
机译:纳米晶铁酸锌(ZnFe_2O_4)是在12 h后由高能球磨从氧化锌(ZnO)和赤铁矿的粉末混合物(α-Fe_2O_3)与球与粉末的质量比为20:1合成的。 X射线衍射,振动样品磁力计(VSM),Msssbauer光谱法和光致发光(PL)用于表征样品。 Rietveld分析和VSM测量表明,该粉末的平均微晶尺寸为10 nm,亚铁磁行为,饱和磁化强度为30 emu / g。在700°C下退火后,晶格参数从8.448降至8.427?样品转变为超顺磁行为,室温M?ssbauer光谱也证实了这一点。讨论了解释所得结果的不同机理以及磁性与结构之间的关系。最后,在整个PL光谱中观察到宽带可见发射带,估计的能带隙约为2.13 eV。

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