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Supramolecular Magnetic Brushes: The Impact of DipolarInteractions on the Equilibrium Structure

机译:超分子磁刷:偶极子的影响平衡结构上的相互作用

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摘要

The equilibrium structure of supramolecular magnetic filament brushes is analyzed at two different scales. First, we study the density and height distributions for brushes with various grafting densities and chain lengths. We use Langevin dynamics simulations with a bead–spring model that takes into account the cross-links between the surface of the ferromagnetic particles, whose magnetization is characterized by a point dipole. Magnetic filament brushes are shown to be more compact near the substrate than nonmagnetic ones, with a bimodal height distribution for large grafting densities. This latter feature makes them also different from brushes with electric dipoles. Next, in order to explain the observed behavior at the filament scale, we introduce a graph theory analysis to elucidate for the first time the structure of the brush at the scale of individual beads. It turns out that, in contrast to nonmagnetic brushes, in which the internal structure is determined by random density fluctuations, magnetic forces introduce a certain order in the system. Because of their highly directionalnature, magnetic dipolar interactions prevent some of the random connectionsto be formed. On the other hand, they favor a higher connectivityof the chains’ free and grafted ends. We show that this complexdipolar brush microstructure has a strong impact on the magnetic responseof the brush, as any weak applied field has to compete with the dipole–dipoleinteractions within the crowded environment.
机译:在两个不同的尺度上分析了超分子磁丝刷的平衡结构。首先,我们研究具有不同嫁接密度和链长的刷子的密度和高度分布。我们使用带有珠-弹簧模型的Langevin动力学模拟,该模型考虑了铁磁粒子表面之间的交联,其磁化强度以点偶极子为特征。磁性长丝刷显示比非磁性长丝刷在基材附近更紧凑,具有双峰高度分布,适用于较大的接枝密度。后一个特征使它们也不同于带有电偶极子的电刷。接下来,为了解释在细丝尺度上观察到的行为,我们引入了图论分析来首次阐明单个珠子尺度上的刷子的结构。事实证明,与非磁性电刷的内部结构由随机密度波动确定的相反,磁力在系统中引入了一定顺序。由于他们的方向性很强自然,磁偶极相互作用阻止了一些随机连接形成。另一方面,他们倾向于更高的连接性链的自由端和嫁接端。我们证明了这种复杂偶极刷的微观结构对磁响应有很大影响的电刷,因为任何弱的应用领域都必须与偶极子-偶极子竞争在拥挤的环境中的互动。

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