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Ni2+ substituted Mg-Cu-Zn ferrites by molten salt route: Evaluation of structural, morphological and electromagnetic properties

机译:Ni2 +取代的Mg-Cu-Zn铁氧体通过熔盐盐:结构,形态学和电磁特性评估

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摘要

We report a facile molten salt route to synthesize Ni2+ substituted Mg-Cu-Zn spinel ferrites with their electromagnetic properties. The ferrite nanoparticles (Mg0.25-xNixCu0.25Zn0.5Fe2O4 with x = 0.0-0.25 in step 0.05) synthesized at 800 degrees C using sodium chloride as a growth inhibitor, revealed an excellent tuning in electromagnetic properties due to addition of Ni. Single-phase formation of spinel ferrite having crystallite size in the range of 45-49 nm was observed by XRD and confirmed by TEM/SAED spot pattern. The obtained dielectric and magnetic properties (high initial permeability = 592, saturation magnetization = 325 emu, coercivity = 36.86 G) of nanostructured spinel ferrite suggest the possibility of utilization of the developed material for MLCI application. The molten salt chemistry, and thereby its effect on structural, morphological and electromagnetic properties of Mg-Cu-Zn ferrites are discussed.
机译:我们报道了一种容易熔融的盐途径以合成Ni2 +取代的Mg-Cu-Zn尖晶石铁氧体,其电磁特性。 使用氯化钠作为生长抑制剂,在800℃合成的铁氧体纳米颗粒(Mg0.25-XnixCu0.25Zn0.5fe2O4,在步骤0.05中具有X = 0.0-0.25),揭示了由于添加Ni的电磁特性优异调整。 通过XRD观察到具有45-49nm范围内的微晶尺寸的尖晶石铁氧体的单相形成,并通过TEM / SAED点图案证实。 所获得的介电和磁性(高初始渗透率= 592,饱和磁化强度= 325 emu,矫顽力= 36.86g)的纳米结构尖晶石铁氧体表明了利用MLCI应用的发发材料的可能性。 讨论了熔盐化学,从而讨论了其对Mg-Cu-Zn铁氧体的结构,形态学和电磁特性的影响。

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