On the Shape and Rheology of Linear Micelles in Dilute Solutions

W. Carl, R. Makhloufi, M. Kröger
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引用次数: 14

Abstract

We calculate steady state properties of linear (wormlike) micelles modeled as flexible bead-spring chains from both microscopic and mesoscopic models. The latter model is based on an expression for the free energy of Gaussian chains, modified by a term which takes into account a finite scission energy in order to describe micelles, or breakable polymer chains. In equilibrium, the length distribution then depends on two parameters, namely the micellar concentration and the scission energy. Results of this approach are compared both with previous mesoscopic descriptions and Molecular Dynamics (MD) computer simulation results of the FENE-C model of linear micellar solutions (Phys. Rev. E 53 (1995) 2531). The mesoscopic model is extended to describe flow situations. Implications are discussed and compared with NonEquilibrium MD (NEMD) computer simulation results for the length distribution and flow alignment of linear micelles as well as the corresponding rheological behavior. For the case of steady shear flow both models do predict a decrease of the average micellar size with increasing shear rate.
稀溶液中线状胶束的形状和流变性研究
我们从微观和介观模型计算了线性(蠕虫状)胶束的稳态特性。后一种模型是基于高斯链的自由能表达式,并通过一个考虑了有限断裂能的术语进行了修改,以便描述胶束或可断裂的聚合物链。在平衡状态下,长度分布取决于两个参数,即胶束浓度和裂变能。该方法的结果与先前的介观描述和线性胶束溶液的FENE-C模型的分子动力学(MD)计算机模拟结果进行了比较。修订E 53(1995) 2531)。将介观模型扩展到描述流动情况。讨论了线性胶束的长度分布、流动方向以及相应的流变行为,并与NEMD计算机模拟结果进行了比较。对于稳定剪切流,两种模型都预测平均胶束尺寸随剪切速率的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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