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首页> 外文期刊>Journal of thermal analysis and calorimetry >Preparation, spectroscopic and thermal analysis of hexa-hydrazine nickel cobalt ferrous succinate precursor and study of solid-state properties of its nanosized thermal product, Ni0.5Co0.5Fe2O4
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Preparation, spectroscopic and thermal analysis of hexa-hydrazine nickel cobalt ferrous succinate precursor and study of solid-state properties of its nanosized thermal product, Ni0.5Co0.5Fe2O4

机译:六氢镍钴铁琥珀酸前体的制备,光谱和热分析及其纳米热产物固态性能研究,Ni0.5Co0.5Fe2O4

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摘要

Nickel cobalt ferrite, Ni0.5Co0.5Fe2O4, has been prepared by precursor combustion technique from hexa-hydrazine nickel cobalt ferrous succinate precursor. The precursor was characterized by chemical analysis, CHNS analysis, infrared spectroscopy, TG-DTA and mass loss studies. The thermal data show how the precursor decomposes in four steps to give stable ferrite phase. The precursor decomposes autocatalytically once initially ignited, to give the 'as-prepared' nano-spinel ferrite. The X-ray diffraction analysis reveals single cubic spinel phase structure. The infrared measurements between 4000 and 350 cm(-1) confirmed the intrinsic cation vibrations of the spinel structure. The SEM image clearly shows the nanosized nature of the ferrite. The dielectric constant and loss tangent are found to decrease with increase in frequency which is due to Maxwell-Wagner interfacial polarization. The loss tangent shows a relaxation peak at similar to 1 kHz. The variation of DC electrical resistivity with temperature indicates semiconductor behaviour. The temperature- and field-dependent magnetization data of 'as-prepared' ferrite reveal that the lattice has either a canted or partially misaligned spin structure due to the nanosized nature of the ferrite.
机译:镍钴铁氧体Ni0.5Co0.5Fe2O4已通过来自六氢肼镍钴铁琥珀酸盐前体的前体燃烧技术制备。通过化学分析,CHNS分析,红外光谱,TG-DTA和大量损失研究表征了前体。热数据显示前体如何在四个步骤中分解以提供稳定的铁氧体相。前体一旦最初点燃,前身就会分解自催化,以给予“制备的”纳米尖晶石铁氧体。 X射线衍射分析显示单个立方尖晶石相结构。 4000至350厘米(-1)之间的红外测量确认了尖晶石结构的固有阳离子振动。 SEM图像清楚地显示了铁氧体的纳米化性质。发现介电常数和损耗切线随着Maxwell-Wagner界面极化的频率的增加而降低。损失正切显示出类似于1 kHz的松弛峰。具有温度的直流电阻率的变化表示半导体行为。 “原样”铁氧体的温度和现场依赖性磁化数据揭示了由于铁氧体的纳米化性质,晶格具有倾斜或部分未对准的旋转结构。

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