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多分散磁性纳米团簇的复磁化谐波

Complex Magnetization Harmonics of Polydispersive Magnetic Nanoclusters.

作者信息

Trisnanto Suko Bagus, Takemura Yasushi

机构信息

Department of Electrical and Computer Engineering, Yokohama National University, Yokohama 240-8501, Japan.

出版信息

Nanomaterials (Basel). 2018 Jun 11;8(6):424. doi: 10.3390/nano8060424.

Abstract

Understanding magnetic interparticle interactions within a single hydrodynamic volume of polydispersed magnetic nanoparticles and the resulting nonlinear magnetization properties is critical for their implementation in magnetic theranostics. However, in general, the field-dependent static and dynamic magnetization measurements may only highlight polydispersity effects including magnetic moment and size distributions. Therefore, as a complement to such typical analysis of hysteretic magnetization curves, we spectroscopically examined the complex magnetization harmonics of magnetic nanoclusters either dispersed in a liquid medium or immobilized by a hydrocolloid polymer, later to emphasize the harmonic characteristics for different core sizes. In the case of superparamagnetic nanoclusters with a 4-nm primary size, particularly, we correlated the negative quadrature components of the third-harmonic susceptibility with an insignificant cluster rotation induced by the oscillatory field. Moreover, the field-dependent in-phase components appear to be frequency-independent, suggesting a weak damping effect on the moment dynamics. The characteristic of the Néel time constant further supports this argument by showing a smaller dependence on the applied dc bias field, in comparison to that of larger cores. These findings show that the complex harmonic components of the magnetization are important attributes to the interacting cores of a magnetic nanocluster.

摘要

了解多分散磁性纳米颗粒单个流体动力学体积内的磁性粒子间相互作用以及由此产生的非线性磁化特性对于它们在磁热诊断中的应用至关重要。然而,一般来说,与场相关的静态和动态磁化测量可能仅突出多分散性效应,包括磁矩和尺寸分布。因此,作为对这种典型的磁滞磁化曲线分析的补充,我们通过光谱法研究了分散在液体介质中或由水胶体聚合物固定的磁性纳米团簇的复磁化谐波,随后强调了不同核心尺寸的谐波特性。特别是对于初级尺寸为4纳米的超顺磁性纳米团簇,我们将三次谐波磁化率的负正交分量与振荡场引起的不显著的团簇旋转相关联。此外,与场相关的同相分量似乎与频率无关,这表明对磁矩动力学的阻尼效应较弱。与较大核心相比,奈尔时间常数的特性通过显示对施加的直流偏置场的依赖性较小进一步支持了这一论点。这些发现表明,磁化的复谐波分量是磁性纳米团簇相互作用核心的重要属性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f394/6027232/1651b9185090/nanomaterials-08-00424-g001.jpg

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