首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Effect of NaOH Concentration and Adding Sequences on Structural and Magnetic Properties of Ni0.4Co0.6Fe2O4 Nanopowders Prepared Via Co-precipitation Route
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Effect of NaOH Concentration and Adding Sequences on Structural and Magnetic Properties of Ni0.4Co0.6Fe2O4 Nanopowders Prepared Via Co-precipitation Route

机译:NaOH浓度和添加序列对通过共沉淀途径制备的Ni0.4CO0.6FE2O4纳米粉粉结构和磁性的影响

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摘要

Ni0.4Co0.6Fe2O4 nanopowders were prepared via the co-precipitation route followed by annealing treatment. The structural and magnetic properties of the as-synthesized samples were determined by XRD, FT-IR, TG-DSC, and PPMS measurements, respectively. The XRD patterns indicated a single-phase cubic spinel structure for all the Ni-Co ferrite samples, regardless of adding sequences of the reactants or NaOH concentration. The analysis of the XRD patterns revealed that the enhancement in lattice constant with increasing NaOH concentration is related to the prevention of oxidization of Co2+ ions in the Ni-Co ferrite lattice. The FT-IR spectra indicated that samples prepared in the B process have fewer impurities than those prepared in the A process. The enhancement in saturation magnetization with the increase in sodium hydroxide concentration could be attributed to the strengthening of super-exchange interaction between A and B sublattices, due to replacements of Co3+ ions (magnetic moment of 0 mu (B)) by Co2+ ions (magnetic moment of 3 mu (B)) at B sublattices. The obvious increase in the coercivity field with the increase in concentration of NaOH solutions can be interpreted in terms of enhancement of magneto-crystalline anisotropy that originated from gradual substitutions of Co3+ ions with Co2+ ions at the octahedral sites.
机译:通过共沉淀途径制备Ni0.4CO0.6Fe2O4纳米粉粉,然后进行退火处理。通过XRD,FT-IR,TG-DSC和PPMS测量分别测定AS合成样品的结构和磁性。 XRD图案表明了所有Ni-Co铁氧体样品的单相立方尖晶石结构,无论加入反应物还是NaOH浓度的序列。 XRD图案的分析显示,随着NaOH浓度的增加,晶格常数的增强与Ni-Co铁氧体晶格中的CO 2 +离子的氧化有关。 FT-IR光谱表明,在B过程中制备的样品比在方法中制备的那些具有较少的杂质。随着氢氧化钠浓度的增加,饱和磁化强度的增强可归因于A和B子发作之间的超交换相互作用,由于CO 2 +离子的CO 3 +离子(磁矩为0μ(B))(磁性B Sublattices的3亩(b)时刻。矫顽场随着NaOH溶液浓度增加的明显增加可以在增强磁性结晶各向异性方面解释,所述磁性结晶各向异性源于CO 3 +离子的逐渐取代,在八面体位点在CO 2 +离子中。

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