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首页> 外文期刊>Soft Nanoscience Letters >Effect of Bi3+ Ion Substitution on Magnetic Properties of Cobalt Nano Ferrites Prepared by Sol-Gel Combustion Method
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Effect of Bi3+ Ion Substitution on Magnetic Properties of Cobalt Nano Ferrites Prepared by Sol-Gel Combustion Method

机译:Bi3 +离子取代对溶胶-凝胶燃烧法制备钴纳米铁氧体磁性能的影响

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Bismuth substituted cobalt nano ferrites with the chemical composition Co Bix Fe2-x O4 (x = 0.00, 0.05, 0.10, 0.15, 0.20 & 0.25) were prepared by sol-gel combustion method. The phase identification of prepared samples is characterised by X-ray powder diffraction (XRD) method, which confirms the formation of a single phase fcc spinal structure. The mean crystallite sizes of all prepared samples were obtained within the range of 21 (±5) nm. Transmission Electron Microscopy (TEM) images also confirmed the crystallite size of all the synthesised samples was in nano range. With the effect of Bi3+ ion substitution on spinal cobalt ferrite, the magnetic properties were investigated by using Vibration Sample Magnetometer (VSM). The obtained hysteresis (M-H) curves of all the samples were analysed under the applied magnetic field of range ± 10 K Oe at 300 K. The magnetic properties such as saturation magnetisation (Ms), remnant magnetization (Mr) and coercivity (Hc) values are tabulated, which show a decrease in trend as the bismuth ion concentration increases. This is due to the addition of Bi3+ ion in the place of Fe3+ ion (octahedral site) and hence the Bi3+-Fe3+ ion interaction predominates as compared with the Fe2+-Fe3+ ion interaction. The data obtained from magnetic studies, the variation among the magnetic properties have been investigated for all the prepared samples.
机译:通过溶胶-凝胶燃烧法制备了化学成分为Co Bix Fe2-x O4(x = 0.00、0.05、0.10、0.15、0.20和0.25)的铋取代钴纳米铁氧体。通过X射线粉末衍射(XRD)方法对制备样品的相鉴定进行了表征,该方法证实了单相fcc脊柱结构的形成。在21(±5)nm范围内获得所有制备样品的平均微晶尺寸。透射电子显微镜(TEM)图像还证实了所有合成样品的微晶尺寸在纳米范围内。在Bi3 +离子取代对钴铁氧体的影响下,使用振动样品磁强计(VSM)研究了磁性。在300 K的±10 K Oe施加磁场下,分析所有样品的磁滞(MH)曲线。磁性能,例如饱和磁化强度(Ms),剩余磁化强度(Mr)和矫顽力(Hc)值表中列出了当铋离子浓度增加时趋势减小的趋势。这是由于在Fe3 +离子的位置(八面体位置)添加了Bi3 +离子,因此与Fe2 + -Fe3 +离子相互作用相比,Bi3 + -Fe3 +离子相互作用占主导。从磁性研究获得的数据,磁性性质之间的变化已针对所有制备的样品进行了研究。

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