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Ferrogels cross-linked by magnetic particles: Field-driven deformation and elasticity studied using computer simulations

机译:磁性粒子交联的Ferrogels:使用计算机模拟研究磁场驱动的变形和弹性

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摘要

Ferrogels, i.e., swollen polymer networks into which magnetic particles are immersed, can be considered as "smart materials" since their shape and elasticity can be controlled by an external magnetic field. Using molecular dynamics simulations on the coarse-grained level, we study a ferrogel in which the magnetic particles act as the cross-linkers of the polymer network. In a homogeneous external magnetic field, the direct coupling between the orientation of the magnetic moments and the polymers by means of covalent bonds gives rise to a deformation of the gel, independent of the interparticle dipole-dipole interaction. In this paper, we quantify this deformation, and, in particular, we investigate the gel's elastic moduli and its magnetic response for two different connectivities of the network nodes. Our results demonstrate that these properties depend significantly on the topology of the polymer network. (C) 2015 AIP Publishing LLC.
机译:可以将铁颗粒浸入其中的Ferrogels(即溶胀的聚合物网络)视为“智能材料”,因为它们的形状和弹性可以通过外部磁场控制。使用粗粒度水平的分子动力学模拟,我们研究了一种铁磁凝胶,其中的磁性粒子充当聚合物网络的交联剂。在均匀的外部磁场中,磁矩的取向与聚合物之间通过共价键的直接耦合引起凝胶的变形,而与粒子间偶极-偶极相互作用无关。在本文中,我们对这种变形进行了量化,特别是针对网络节点的两种不同连接性,研究了凝胶的弹性模量及其磁响应。我们的结果表明,这些性质在很大程度上取决于聚合物网络的拓扑结构。 (C)2015 AIP Publishing LLC。

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