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The role of dipole interactions in hyperthermia heating colloidal clusters of densely-packed superparamagnetic nanoparticles

机译:偶极相互作用在高温加热胶体簇中的作用密集包装的超顺磁性纳米粒子

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This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia heating colloidal clusters of densely-packed Fe3O4 nanoparticles at low field intensity. Emulsion droplet solvent evaporation method was used to assemble oleic acid modified Fe3O4 particles into compact clusters which were stabilized by surfactant in water. Both experimental and simulation works were conducted to study their heating performance at different cluster’s sizes. The dipole interactions improve the heating only when the clusters are small enough to bring an enhancement in clusters’ shape anisotropy. The shape anisotropy is reduced at greater clusters’ sizes, since the shapes of the clusters become more and more spherical. Consequently, the dipole interactions change to impair the heating efficiency at larger sizes. When the clusters are totally isotropic in shape, the heating efficiency is lower than that of non-interacting particles despite the cluster’s size, although the efficiency increases by a little bit at a particular size most likely due to the dipole couplings. In these situations, one has to use particles with higher magnetic anisotropy and/or saturation magnetization to improve the heating.
机译:这项工作旨在探讨粒子偶极相互作用对低场强度浓密填充Fe3O4纳米颗粒的热疗偶极胶体簇的影响。乳液液滴溶剂蒸发方法用于将油酸改性的Fe3O4颗粒组合成浓缩簇,其通过水中的表面活性剂稳定。进行了实验和仿真工程,以研究其不同群集尺寸的加热性能。偶极子相互作用仅在簇足够小时改善加热,以使簇形状各向异性的增强。由于簇的形状变得越来越球的形状,因此形状各向异性降低。因此,偶极相互作用改变以损害较大尺寸的加热效率。尽管簇完全各向同性,但是尽管簇的尺寸,加热效率低于非相互作用颗粒的颗粒,尽管在偶极联轴器的特定尺寸下效率增加了一点。在这些情况下,必须使用具有较高磁各向异性和/或饱和磁化的颗粒以改善加热。

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