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首页> 外文期刊>CERAMICS INTERNATIONAL >Tuning of ferrimagnetic nature and hyperfine interaction of Ni2+ doped cobalt ferrite nanoparticles for power transformer applications
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Tuning of ferrimagnetic nature and hyperfine interaction of Ni2+ doped cobalt ferrite nanoparticles for power transformer applications

机译:Ni2 +掺杂钴铁氧体纳米粒子用于电力变压器应用的含铁磁性性质和高浓缩相互作用的调整

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摘要

Ferrites may contain single domain particles which gets converted into super-paramagnetic state near critical size. To explore the existence of these characteristic feature of ferrites, we have performed magnetization(M-H loop) and Mossbauer spectroscopic studies of Ni2+ substitution effect in Co1-xNixFe2O4 (where x = 0, 0.25, 0.5, 0.75 and 1) nanoparticles were fabricated by solution combustion route using mixture of carbamide and glucose as fuels for the first time. As prepared samples exhibit spinel cubic structure with lattice parameters which decreases linearly with increase in Ni2+ concentration. The M-H loops reveals that saturation magnetization (M-s), coercive field(H-c) remanence magnetization(M-r) and magnetron number(eta(B)) decreases significantly with increasing Ni2+ substitution. The variation of saturation magnetization has been explained on the basis of Neels molecular field theory. The coercive field(H-c) is found strongly dependent on the concentration of Ni2+ and decrease of coercivity suggests that the particles have single domain and exhibits superparamagnetic behavior. The Mossbauer spectroscopy shows two ferrimagnetically relaxed Zeeman sextets distribution at room temperature. The dependence of Mossbauer parameters such as isomer shift, quadru pole splitting, line width and hyperfine magnetic field on Ni2+ concentration have been discussed. Hence our results suggest that synthesized materials are potential candidate for power transformer application.
机译:铁氧体可含有单个域颗粒,其在临界大小附近转换成超级顺态。为了探讨铁氧体的这些特征的存在,我们在CO1-XnixFe 2 O 4中进行了磁化(MH环)和Ni2 +取代效果的磁共振分光镜研究(其中x = 0,0.25,0.5,0.75和1)纳米颗粒由溶液制成使用氨基胺和葡萄糖的混合物首次使用碳酰胺和葡萄糖的燃烧途径。由于制备的样品具有尖晶石立方结构,用晶格参数随着Ni2 +浓度的增加而导致线性降低。 M-H环揭示饱和磁化强度(M-S),矫顽磁场(H-C)剩磁磁化强度(M-R)和磁控管数(ETA(B))随着NI2 +替代而显着降低。已经基于NEES分子场理论解释了饱和磁化强度的变化。发现矫顽磁场(H-C)强烈依赖于Ni2 +的浓度,并且矫顽力的降低表明颗粒具有单个结构域并表现出超顺磁性行为。 Mossbauer光谱显示两个在室温下的两个铁磁性放宽的塞姆斯塞族分布。已经讨论了Mossbauer参数的依赖性,例如异构体换档,Quadru杆分裂,线宽和高血清磁场上的Ni2 +浓度上的依赖性。因此,我们的结果表明,合成材料是电力变压器应用的潜在候选者。

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