首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of evolving microstructure on electrical and magnetic characteristics in mechanically synthesized polycrystalline Ni-ferrite nanoparticles
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Influence of evolving microstructure on electrical and magnetic characteristics in mechanically synthesized polycrystalline Ni-ferrite nanoparticles

机译:不断演变的微观结构对机械合成的多晶镍铁氧体纳米粒子的电磁特性的影响

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NiFe2O4 nanoparticles were synthesized via mechanical activation of NiO and Fe2O3 powders in a high energy planetary ball mill. The results indicated that after 30 h of ball milling the NiO/Fe2O3 reacted with a solid-state reaction mode producing nickel ferrite particles with 12 nm in size. Differential scanning calorimetry (DSC) on the 30-h activated sample showed nickel ferrite's Curie temperature to be around 573 degrees C. The 30 h-activated compacted powders were sintered from 900 to 1300 degrees C with 100 degrees C increments. From the XRD patterns results, however, increasing sintering temperature to 1300 degrees C led to an increase of the Ni-ferrite's crystallite sizes; the sizes remained in nano scale and no phase change was observed. A critical grain size of 211 nm was found from plotting the grain size against coercivity, suggesting a single-domain particles area was reduced and multi-domain particles area was increased by increasing sintering temperature. The grain growth activation energy was found to be 64.43 kJ/mol. The electrical resistivity obtained was similar to 10(6) Omega cm at 900 degrees C and its value decreased to similar to 10(5) Omega cm at 1300 degrees C sintering. VSM studies showed saturation-magnetization increase from 8.5 emu/g in the 30 h-activated sample to 52.6 emu/g in those sintered at 1300 degrees C. Two different shapes of hysteresis loops were observed in the B-H curves. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在高能行星式球磨机中对NiO和Fe2O3粉末进行机械活化来合成NiFe2O4纳米颗粒。结果表明,球磨30 h后,NiO / Fe2O3以固态反应模式反应,生成尺寸为12 nm的镍铁氧体颗粒。 30小时活化样品的差示扫描量热法(DSC)显示,铁素体镍的居里温度约为573摄氏度。将30小时活化的压实粉末以900摄氏度的增量从900烧结到1300摄氏度。然而,根据X射线衍射图谱可知,将烧结温度提高到1300摄氏度会导致镍铁氧体晶粒尺寸的增加。尺寸保持在纳米级,没有观察到相变。通过将晶粒尺寸相对于矫顽力作图,发现临界晶粒尺寸为211 nm,这表明通过提高烧结温度可以减小单畴颗粒面积,而增加多畴颗粒面积。发现晶粒生长活化能为64.43kJ / mol。在900摄氏度时获得的电阻率类似于10(6)Ωcm,在1300摄氏度烧结时其电阻值降低至类似于10(5)Ωcm。 VSM研究显示,饱和磁化强度从30 h活化样品中的8.5 emu / g增加到在1300℃烧结的样品中的52.6 emu / g。在B-H曲线中观察到两种不同形状的磁滞回线。 (C)2015 Elsevier B.V.保留所有权利。

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