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首页> 外文期刊>Physica, B. Condensed Matter >Low-temperature magnetization behaviors of superparamagnetic MnZn ferrites nanoparticles
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Low-temperature magnetization behaviors of superparamagnetic MnZn ferrites nanoparticles

机译:超顺磁MNZN铁氧体纳米粒子的低温磁化行为

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摘要

Here, we report microstructure and magnetic properties of MnxZn1-xFe2O4 (x = 0-1) nanoparticles synthesized by sol-gel method. From microstructure studies, it is confirmed that all compositions of the present study exhibited a pure cubic spinel ferrite phase with narrow particle size distribution with an average particle size between 13 and 20 nm. From the temperature and magnetic field dependence magnetization data, a superparamagnetic (SPM)-like behavior is seen with a large magnetic moment (similar to 10(4) mu(B)) in particles. From the analysis of the difference in field-cooled and zero-field-cooled magnetization data, which presented a distribution of blocking temperatures which in turn supported the microstructural data. Further, the analysis of the thermoremanence magnetization data reveals the activation resulting from multiple anisotropy energy barriers due to the size distribution of the particles. The results obtained from the memory effect studies on temperature dependent magnetization in field-cooled and zero-field-cooled protocols confirm the SPM behavior of the particles.
机译:在此,我们报告溶胶 - 凝胶法合成的MNXZN1-XFE2O4(X = 0-1)纳米颗粒的微观结构和磁性。从微观结构研究中,证实本研究的所有组合物都表现出纯立方尖晶石铁氧体相,具有窄的粒度分布,其平均粒径为13至20nm。从温度和磁场依赖性磁化数据中,通过颗粒中的大磁矩(类似于10(4)μ)),看到超顺磁性(SPM)的行为。从分析现场冷却和零场冷磁化数据的差异,这呈现了阻塞温度的分布,这又支持了微观结构数据。此外,热道磁化数据的分析揭示了由于颗粒的尺寸分布引起的多个各向异性能量屏障导致的激活。从现场冷却和零场冷方案中的温度相关磁化的记忆效应研究获得的结果证实了颗粒的SPM行为。

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