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Effect of Synthesis Parameter on Crystal Structures and Magnetic Properties of Magnesium Nickel Ferrite (Mg_(0.50Ni_(0.5)Fe2O4) Nanoparticles

机译:合成参数对镁铁晶晶体结构和磁性特性的影响(Mg_(0.50Ni_(0.5)Fe2O4)纳米粒子

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Mg_(0.50Ni_(0.5)Fe2O4 nanoparticles have been successfully synthesized by using co-precipitation method and varying the synthesis parameter, i.e. synthesis temperature and NaOH concentration. X-ray Diffraction (XRD) pattern showed that nanoparticles have cubic spinel structures with an additional phase of γ-Fe2O3 and particle size varies within the range of 4.3 -6.7 nm. This variation is due to the effect of various synthesis parameters. Transmission Electron Microscopy (TEM) image showed that the nanoparticles exhibited agglomeration. The observed diffraction ring from selected area electron diffraction showed that the sample was polycrystalline and confirmed the peak appearing in XRD. The coercivities showed an increasing trend with an increase in particle size from 44.7 Oe to 49.6 Oe for variation of NaOH concentration, and a decreasing trend with an increase in particle size from 46.8 to 45.1 Oe for variation of synthesis temperature. The maximum magnetization showed an increasing trend with an increase in the ferrite phase from 3.7 emu/g to 5.4 emu/g possessed in the sample with variations on NaOH concentration. The maximum magnetization for the sample with variations on synthesis temperature varied from 4.4 emu/g to 5.7 emu/g due to its crystal structures.
机译:通过使用共沉淀法成功合成Mg_(0.55℃(0.5)Fe 2 O 4纳米颗粒,并改变合成参数,即合成温度和NaOH浓度。X射线衍射(XRD)图案显示纳米颗粒具有额外的立方尖晶石结构γ-Fe2O3的相位和粒度在4.3 -6.7nm的范围内变化。该变化是由于各种合成参数的效果。透射电子显微镜(TEM)图像显示纳米颗粒表现出附聚。从选定中观察到的衍射环区域电子衍射表明,样品是多晶的,并证实了XRD中出现的峰值。凝结性呈增加趋势,粒径增加到49.6°OE,用于变异NaOH浓度,粒子增加降低趋势尺寸为46.8至45.1 oe,用于合成温度的变化。最大磁化表现出增加在样品中从3.7 emu / g增加到5.4 emu / g的趋势,具有NaOH浓度的变化。样品的最大磁化为合成温度变化的变化由于其晶体结构,从4.4 emu / g变化到5.7 emu / g。

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