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Scattering properties and internal structure of magnetic filament brushes

机译:电磁丝刷的散​​射特性和内部结构

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摘要

Practical applications of polymer brush-like systems rely on a clear understanding of their internal structure. In the case of magnetic nanoparticle filament brushes, the competition between bonding and nonbonding interactions—including long range magnetic dipole–dipole interactions—makes the microstructure of these polymer brush-like systems rather complex. On the other hand, the same interactions open up the possibility to manipulate the meso- and macroscopic responses of these systems by applying external magnetic fields or by changing the background temperature. In this study, we put forward an approach to extract information about the internal structure of a magnetic filament brush from scattering experiments. Our method is based on the mapping of the scattering profiles to the information about the internal equilibrium configurations of the brushes obtained from computer simulations. We show that the structure of the magnetic filament brush is strongly anisotropic in the direction perpendicular to the grafting surface, especially at low temperatures and external fields. This makes slice-by-slice scattering measurements a technique very useful for the study of such systems.
机译:聚合物刷状系统的实际应用取决于对它们内部结构的清楚理解。就磁性纳米粒子长丝刷而言,键和非键相互作用(包括长距离磁偶极-偶极相互作用)之间的竞争使这些聚合物刷状系统的微观结构相当复杂。另一方面,相同的相互作用为通过施加外部磁场或改变背景温度来操纵这些系统的介观和宏观响应提供了可能性。在这项研究中,我们提出了一种从散射实验中提取有关磁丝刷内部结构信息的方法。我们的方法基于将散射曲线映射到有关通过计算机模拟获得的画笔内部平衡配置的信息。我们表明,磁丝刷的结构在垂直于接枝表面的方向上具有强烈的各向异性,特别是在低温和外部磁场下。这使得逐片散射测量成为一种对此类系统的研究非常有用的技术。

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