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首页> 外文期刊>Journal of Physics. Condensed Matter >Role of interparticle interactions on the magnetic behavior of Mg0.95Mn0.05Fe2O4 ferrite nanoparticles
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Role of interparticle interactions on the magnetic behavior of Mg0.95Mn0.05Fe2O4 ferrite nanoparticles

机译:颗粒间相互作用对Mg0.95Mn0.05Fe2O4铁氧体纳米颗粒磁行为的影响

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摘要

We present here a detailed investigation of the static and dynamic magnetic behavior of a Mg0.95Mn0.05Fe2O4 spinel ferrite nanoparticle system synthesized by high-energy ball milling of almost identical particle size distributions (< D > = 4.7, 5.1 and 6.0 +/- 0.6 nm). The samples were characterized by using x-ray diffraction, Mossbauer spectroscopy, dc magnetization and frequency dependent real. chi'(T) and imaginary chi ''(T) parts of ac susceptibility measurements. The zero-field-cooled (ZFC) and field-cooled (FC) magnetization have been recorded in a low field and show a behavior typical of superparamagnetic particles above a temperature of 185 +/- 5 K, which is further supported from the temperature dependent Mossbauer measurements. The fact that the blocking temperature calculated from the ZFC magnetization and Mossbauer data are almost similar gives a clear indication of the interparticle interactions among these nanoparticle systems. This is further supported from the FC magnetization curves, which are almost flat below a certain temperature (less than the blocking temperature), as compared with the monotonically increasing behavior characteristics of non-interacting superparamagnetic particles. A shift of the blocking temperature with increasing frequency was observed in the real. chi'(T) and imaginary. chi ''(T) parts of the ac susceptibility measurements. The analysis of the results shows that the data fit well with the Vogel-Fulcher law, whereas trials using the Neel -Brown and power law are unproductive. The role of magnetic interparticle interactions on the magnetic behavior, namely superparamagnetic relaxation time and magnetic anisotropy, are discussed.
机译:我们在这里对通过几乎相同的粒径分布( = 4.7、5.1和6.0 +/-的高能球磨合成)Mg0.95Mn0.05Fe2O4尖晶石铁氧体纳米粒子系统的静态和动态磁行为进行详细研究0.6 nm)。通过使用X射线衍射,Mossbauer光谱,直流磁化强度和频率相关实数来表征样品。磁化率测量的chi'(T)和虚构chi''(T)部分。零场冷(ZFC)和场冷(FC)磁化强度已记录在低磁场中,并显示了温度超过185 +/- 5 K时超顺磁性粒子的典型行为,该行为进一步得到了温度的支持。依赖的Mossbauer测量。从ZFC磁化强度和Mossbauer数据计算得出的阻隔温度几乎相似的事实清楚地表明了这些纳米粒子系统之间的粒子间相互作用。与非相互作用的超顺磁性粒子的单调增加的行为特征相比,FC磁化曲线进一步支持了这一点,FC磁化曲线在一定温度(低于阻断温度)以下几乎平坦。在实际中观察到阻塞温度随频率增加而变化。 chi'(T)和虚构的。 chi''(T)部分的磁化率测量。对结果的分析表明,数据符合Vogel-Fulcher定律,而使用Neel-Brown和幂定律的试验无效。讨论了磁粒子间相互作用对磁行为的作用,即超顺磁弛豫时间和磁各向异性。

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