Chen Ting, Hynninen Antti-Pekka, Prud'homme Robert K, Kevrekidis Ioannis G, Panagiotopoulos Athanassios Z
Department of Chemical Engineering, Princeton University, Princeton, New Jersey 08544-5263, USA.
J Phys Chem B. 2008 Dec 25;112(51):16357-66. doi: 10.1021/jp805826a.
We present a coarse-grained, implicit solvent model for polystyrene-b-poly(ethylene oxide) in aqueous solution and study its assembly kinetics using Brownian dynamics simulations. The polymer is modeled as a chain of freely jointed beads interacting through effective potentials. Coarse-grained force field parameters are determined by matching experimental thermodynamic quantities including radius of gyration, second virial coefficient, aggregation number, and critical micelle concentration. We investigate the influence of cooling rate (analogous to the rate of solvent quality change in rapid precipitations), polymer concentration, and friction coefficient on the assembly kinetics and compare simulation results to flash nanoprecipitation experiments. We find that assembly kinetics show a linear scaling relation with inverse friction coefficient when the friction coefficient is larger than 1. When the cooling time is less than the characteristic micellization time, stable kinetically arrested clusters are obtained; otherwise, close-to-equilibrium micelles are formed. The characteristic micellization time is estimated to be only 3-6 ms, in contrast to 30-40 ms previously determined in experiments. We suggest that previous experiments probed the formation of micellar clusters while simulations in this work studied the kinetics of a single micelle assembled from free polymer chains.
我们提出了一种用于水溶液中聚苯乙烯 - b - 聚环氧乙烷的粗粒度隐式溶剂模型,并使用布朗动力学模拟研究其组装动力学。聚合物被建模为通过有效势相互作用的自由连接珠子链。通过匹配包括回转半径、第二维里系数、聚集数和临界胶束浓度在内的实验热力学量来确定粗粒度力场参数。我们研究了冷却速率(类似于快速沉淀中溶剂质量变化的速率)、聚合物浓度和摩擦系数对组装动力学的影响,并将模拟结果与快速纳米沉淀实验进行比较。我们发现,当摩擦系数大于1时,组装动力学与反摩擦系数呈现线性比例关系。当冷却时间小于特征胶束化时间时,可获得稳定的动力学停滞簇;否则,会形成接近平衡的胶束。估计特征胶束化时间仅为3 - 6毫秒,而之前实验确定的时间为30 - 40毫秒。我们认为,之前的实验探测的是胶束簇的形成,而本工作中的模拟研究的是由自由聚合物链组装成单个胶束的动力学。