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模型胶体凝胶网络的自组装与协同动力学

Self-assembly and cooperative dynamics of a model colloidal gel network.

作者信息

Colombo Jader, Del Gado Emanuela

机构信息

ETH Zurich, Department of Civil, Environmental and Geomatic Engineering, CH-8093 Zurich, Switzerland.

出版信息

Soft Matter. 2014 Jun 14;10(22):4003-15. doi: 10.1039/c4sm00219a. Epub 2014 Apr 16.

Abstract

We study the assembly into a gel network of colloidal particles, via effective interactions that yield local rigidity and make dilute network structures mechanically stable. The self-assembly process can be described by a Flory-Huggins theory, until a network of chains forms, whose mesh size is on the order of, or smaller than, the persistence length of the chains. The localization of the particles in the network, akin to some extent to caging in dense glasses, is determined by the network topology, and the network restructuring, which takes place via bond breaking and recombination, is characterized by highly cooperative dynamics. We use NVE and NVT molecular dynamics as well as Langevin dynamics and find a qualitatively similar time dependence of time correlations and of the dynamical susceptibility of the restructuring gel. This confirms that the cooperative dynamics emerge from the mesoscale organization of the network.

摘要

我们通过有效相互作用研究胶体颗粒组装成凝胶网络的过程,这些相互作用产生局部刚性并使稀网络结构在机械上稳定。自组装过程可以用弗洛里-哈金斯理论来描述,直到形成链状网络,其网孔尺寸约为链的持久长度或小于链的持久长度。颗粒在网络中的定位在一定程度上类似于在致密玻璃中的笼蔽效应,它由网络拓扑结构决定,而通过键的断裂和重组发生的网络重构具有高度协同的动力学特征。我们使用NVE和NVT分子动力学以及朗之万动力学,发现重组凝胶的时间相关性和动态磁化率在定性上具有相似的时间依赖性。这证实了协同动力学源于网络的中尺度组织。

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