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Influence of clustering on the magnetic properties and hyperthermia performance of iron oxide nanoparticles

机译:聚类对氧化铁纳米粒子磁性和高温性能的影响

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Clustering of magnetic nanoparticles can drastically change their collective magnetic properties, which in turn may influence their performance in technological or biomedical applications. Here, we investigate a commercial colloidal dispersion (FeraSpin (TM) R), which contains dense clusters of iron oxide cores (mean size around 9 nm according to neutron diffraction) with varying cluster size (about 18-56 nm according to small angle x-ray diffraction), and its individual size fractions (FeraSpin (TM) XS, S, M, L, XL, XXL). The magnetic properties of the colloids were characterized by isothermal magnetization, as well as frequency-dependent optomagnetic and AC susceptibility measurements. From these measurements we derive the underlying moment and relaxation frequency distributions, respectively. Analysis of the distributions shows that the clustering of the initially superparamagnetic cores leads to remanent magnetic moments within the large clusters. At frequencies below 10(5) rad s(-1), the relaxation of the clusters is dominated by Brownian (rotation) relaxation. At higher frequencies, where Brownian relaxation is inhibited due to viscous friction, the clusters still show an appreciable magnetic relaxation due to internal moment relaxation within the clusters. As a result of the internal moment relaxation, the colloids with the large clusters (FSL, XL, XXL) excel in magnetic hyperthermia experiments.
机译:磁性纳米粒子的聚类可以大大改变它们的集体磁性,这反过来可能影响它们在技术或生物医学应用中的性能。在这里,我们研究了商业胶体分散(Feraspin(TM)R),其含有不同的簇尺寸(根据小角度x的约18-56nm的中子衍射约9nm的平均大小约为9nm的平均大小约为9nm)。 -Ray衍射),其单独的尺寸分数(Feraspin(TM)Xs,S,M,L,XL,XXL)。通过等温磁化,以及频率依赖性洋光和AC敏感测量的表征胶体的磁性。从这些测量中,我们可以分别推导出潜在的片刻和弛豫频率分布。分布的分析表明,最初超顺磁性核心的聚类导致大簇内的倒置磁矩。在低于10(5)(-1)的频率下,簇的松弛由布朗(旋转)松弛主导。在较高的频率下,由于粘性摩擦,布朗尼弛豫被抑制,因此群体仍然显示出可明显的磁性松弛,由于簇内的内部时刻松弛。由于内部弛豫,磁体热疗实验中具有大簇(FSL,XL,XXL)胶质的胶体。

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