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基于微波的合成;Co²⁺ 掺杂的 MnFe₂O₄ 的结构、光学和磁性测量

Microwave Based Synthesis; Structural, Optical and Magnetic Measurements of Co²⁺ Doped MnFe₂O4.

作者信息

Amalthi P, Vijaya J Judith, Kennedy L John, Bououdina M

出版信息

J Nanosci Nanotechnol. 2016 Jan;16(1):715-22. doi: 10.1166/jnn.2016.10680.

Abstract

CO²⁺ doped manganese ferrite (Mn₁₋xCoxFe₂O₄, x = 0.0, 0.1, 0.2, 0.3, 0.4, 0.5) samples were synthesized by a microwave combustion method. Nitrates of the constituent elements and urea were respectively used as the oxidizer and fuel to drive the reaction. On an average a yield of 80% were obtained for all the compositions. Light-absorbing properties from UV-Vis diffuse reflection spectrum were studied and the results infer that the band gap energy (Eg) of the pure MnFe2O4 is 1.76 eV and with increase in C02+ ion concentration, it increases to 2.25 eV. The phase purity and crystal lattice symmetry were estimated from X-ray diffraction (XRD) and was identified as the spinel cubic crystal structure. The lattice parameter is found to decrease with an increase in Co content. The crystallite size was in the range of 19-25 nm. The purity and the composition of the elements were further confirmed by energy dispersive X-ray (EDX) results. Microstructural features obtained by scanning electron microscope (SEM) demonstrate that the nanocrystals were formed with a decrease in average grain size with C02+ content. Room temperature magnetic measurement for stoichiometric samples is discussed with the help of vibrating sample magnetometer (VSM). The saturation magnetization (M), remanant magnetization (Mr) and coercivity (H.) are measured from the respective hysteresis plots.

摘要

采用微波燃烧法合成了掺CO²⁺的锰铁氧体(Mn₁₋xCoxFe₂O₄,x = 0.0、0.1、0.2、0.3、0.4、0.5)样品。分别使用组成元素的硝酸盐和尿素作为氧化剂和燃料来驱动反应。所有组成的平均产率为80%。研究了紫外-可见漫反射光谱的吸光性能,结果表明纯MnFe₂O₄的带隙能量(Eg)为1.76 eV,随着CO²⁺离子浓度的增加,带隙能量增加到2.25 eV。通过X射线衍射(XRD)估计相纯度和晶格对称性,并确定其为尖晶石立方晶体结构。发现晶格参数随Co含量的增加而减小。微晶尺寸在19 - 25 nm范围内。能量色散X射线(EDX)结果进一步证实了元素的纯度和组成。扫描电子显微镜(SEM)获得的微观结构特征表明,随着CO²⁺含量的增加,形成了平均晶粒尺寸减小的纳米晶体。借助振动样品磁强计(VSM)讨论了化学计量比样品的室温磁性测量。从各自的磁滞回线测量饱和磁化强度(M)、剩余磁化强度(Mr)和矫顽力(Hc)。

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