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一种具有波动缠结数的多链聚合物滑弹簧模型:密度涨落、受限效应和相分离

A multi-chain polymer slip-spring model with fluctuating number of entanglements: Density fluctuations, confinement, and phase separation.

作者信息

Ramírez-Hernández Abelardo, Peters Brandon L, Schneider Ludwig, Andreev Marat, Schieber Jay D, Müller Marcus, de Pablo Juan J

机构信息

Materials Science Division, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, Illinois 60439, USA.

Institute for Molecular Engineering, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Chem Phys. 2017 Jan 7;146(1):014903. doi: 10.1063/1.4972582.

Abstract

Coarse grained simulation approaches provide powerful tools for the prediction of the equilibrium properties of polymeric systems. Recent efforts have sought to develop coarse-graining strategies capable of predicting the non-equilibrium behavior of entangled polymeric materials. Slip-link and slip-spring models, in particular, have been shown to be capable of reproducing several key aspects of the linear response and rheology of polymer melts. In this work, we extend a previously proposed multi-chain slip-spring model in a way that correctly incorporates the effects of the fluctuating environment in which polymer segments are immersed. The model is used to obtain the equation of state associated with the slip-springs, and the results are compared to those of related numerical approaches and an approximate analytical expression. The model is also used to examine a polymer melt confined into a thin film, where an inhomogeneous distribution of polymer segments is observed, and the corresponding inhomogeneities associated with density fluctuations are reflected on the spatial slip-spring distribution.

摘要

粗粒化模拟方法为预测聚合物体系的平衡性质提供了强大的工具。最近的研究致力于开发能够预测缠结聚合物材料非平衡行为的粗粒化策略。特别是,滑移链和滑移弹簧模型已被证明能够再现聚合物熔体线性响应和流变学的几个关键方面。在这项工作中,我们以正确纳入聚合物链段所处波动环境影响的方式扩展了先前提出的多链滑移弹簧模型。该模型用于获得与滑移弹簧相关的状态方程,并将结果与相关数值方法和近似解析表达式的结果进行比较。该模型还用于研究限制在薄膜中的聚合物熔体,在其中观察到聚合物链段的不均匀分布,并且与密度涨落相关的相应不均匀性反映在空间滑移弹簧分布上。

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