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首页> 外文期刊>Journal of magnetism and magnetic materials >Modulation in magnetic exchange interaction, core shell structure and Hopkinson's peak with chromium substitution into Ni_(0.75)Co_(0.25)Fe_2O_4 nano particles
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Modulation in magnetic exchange interaction, core shell structure and Hopkinson's peak with chromium substitution into Ni_(0.75)Co_(0.25)Fe_2O_4 nano particles

机译:铬取代Ni_(0.75)Co_(0.25)Fe_2O_4纳米粒子中磁交换相互作用,核壳结构和霍普金森峰的调制

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The ever growing applications and ever evolving challenges of magnetic nano particles has been motivating the researchers from various disciplines towards this area of magnetic nano particles. Cation substitutional effect on the magnetic structure of the nanoparticles forms a crucial aspect in their applications. Here the environmentally benign auto combustion method was employed to synthesize chromium substituted nickel cobalt ferrite (Ni0.75Co0.25Fe2-xCrxO4; x = 0, 0.10, 0.15) nano particles, from aqueous metal nitrate solutions. Chromium substitution has shown its effect on the structural, magnetic and electrical properties of Ni0.75Co0.25Fe2O4. Structural and phase analysis of the prepared samples show increased phase purity of ferrite sample with increasing Cr substitution. The TEM (Transmission Electron Microscope) image confirms the nano size of the particles, EDS (Energy dispersive X-ray Spectroscopy) has supported the stoichiometry of the prepared samples and FTIR (Fourier-transform infrared spectroscopic) analysis confirms the spinel structure and also suggests cation redistributions with chromium substitution. VSM (Vibrational Sample Magnetometer) is used to study the magnetic properties through magnetic hysteresis (M−H) loop and magnetic Hopkinson effect. All samples show hysteresis and show reduction in magnetic properties with increase in chromium content. The thermo magnetic study shows Hopkinson peak(s) in the magnetization vs. temperature (M−T) graph and also shows variation in the nature of Hopkinson peak with chromium substitution. Possible reasons for the changes in the nature of the peak are discussed.
机译:磁性纳米颗粒的不断增长的应用和不断发展的挑战一直在激励着各个学科的研究人员朝着磁性纳米颗粒的这一领域发展。阳离子对纳米颗粒磁性结构的取代作用在其应用中形成了至关重要的方面。在此,采用环境友好的自动燃烧方法,由金属硝酸盐水溶液合成铬取代的镍钴铁氧体(Ni0.75Co0.25Fe2-xCrxO4; x = 0,0.10,0.15)纳米粒子。铬取代已显示出对Ni0.75Co0.25Fe2O4的结构,磁和电性能的影响。所制备样品的结构和相分析表明,随着Cr取代量的增加,铁素体样品的相纯度提高。透射电子显微镜(TEM)图像证实了颗粒的纳米尺寸,EDS(能量色散X射线能谱)支持了所制备样品的化学计量,FTIR(傅里叶变换红外光谱)分析证实了尖晶石的结构,并提出了建议铬取代的阳离子再分布。 VSM(振动样品磁力计)用于通过磁滞(MH)环路和霍普金森效应研究磁性能。所有样品都显示出磁滞现象,并且随着铬含量的增加,磁性能降低。热磁研究在磁化温度曲线(MT)中显示了霍普金森峰,并且还显示了霍普金森峰的性质随铬的取代而变化。讨论了峰性质改变的可能原因。

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