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首页> 外文期刊>Applied Nanoscience >Study of structure and magnetic properties of Ni–Zn ferrite nano-particles synthesized via co-precipitation and reverse micro-emulsion technique
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Study of structure and magnetic properties of Ni–Zn ferrite nano-particles synthesized via co-precipitation and reverse micro-emulsion technique

机译:共沉淀和反向微乳液技术合成的镍锌铁氧体纳米粒子的结构和磁性研究

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Nano-crystalline Ni–Zn ferrites were synthesized by chemical co-precipitation and reverse micro-emulsion technique with an average crystallite size of 11 and 6?nm, respectively. The reverse micro-emulsion method has been found to be more appropriate for nano-ferrite synthesis as the produced particles are monodisperse and highly crystalline. Zero-field cooled and field cooled magnetization study under different magnetic fields and magnetic hysteresis loops at different temperatures have been performed. The non-saturated M–H loops, absence of hysteresis, and coercivity at room temperature are indicative of the presence of super paramagnetic and single-domain nano-particles for both the materials. In sample ‘a’, the blocking temperature ( T B) has been observed to decrease from 255 to 120?K on increasing the magnetic field from 50 to 1,000?Oe, which can be attributed to the reduction of magneto crystalline anisotropy constant. The M S and coercivity were found to be higher for sample ‘a’ as compared with sample ‘b’ since surface effects are neglected on increasing the crystallite size.
机译:纳米晶镍锌铁氧体通过化学共沉淀和反向微乳化技术合成,平均晶粒尺寸分别为11和6?nm。已经发现,反向微乳液法更适合于纳米铁氧体的合成,因为所产生的颗粒是单分散的且高度结晶。在不同的磁场和不同温度下的磁滞回线下,进行了零磁场冷却和磁场冷却的磁化研究。非饱和的M–H回路,没有磁滞和室温下的矫顽力表明两种材料都存在超顺磁性和单畴纳米粒子。在样品“ a”中,已观察到当磁场从50增加到1,000?Oe时,阻断温度(T B )从255降低到120?K,这可以归因于降低磁晶各向异性常数。发现样品“ a”的M S 和矫顽力高于样品“ b”,因为在增加微晶尺寸方面忽略了表面效应。

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