Nyrkova Irina A, Semenov Alexander N
Physics Department, Moscow State University, Moscow 119992, Russia.
Faraday Discuss. 2005;128:113-27. doi: 10.1039/b403359k.
We develop a theoretical approach to micellization of the PEO-PVP block-copolymer in water. This copolymer is a weak polyelectrolyte due to protonation of VP blocks. The theory accounts for non-linear ion screening, and predicts strong position dependence of both ion concentration and the effective Debye length. We consider both the case when the local Debye length is small compared to the core radius and the case when it is large. We found that the effective (local) pH is not uniform even inside one micellar core, hence non-uniform protonation of the core with higher charge density near the surface. In many cases the core charge is concentrated in a relatively thin surface layer. Considering statistical weights of non-equilibrium micelles and their continuous evolution we show that kinetics of both formation and dissociation of typical block-copolymer or surfactant micelles can be extremely slow. Thus micelle formation at the genuine (equilibrium) critical micelle concentration (c.m.c.) is totally suppressed (involves astronomical time scales) if the micelles are big enough. An 'apparent' critical micelle concentration (c.m.c.) is introduced to account for this effect. The apparent c.m.c. could be much higher than the genuine equilibrium c.m.c., i.e. a significant hysteresis is inherent in these systems. We also determine the ranges of meta-stability of micelles depending on the experimental time-scales.
我们开发了一种关于聚环氧乙烷-聚乙烯基吡咯烷酮嵌段共聚物在水中胶束化的理论方法。由于VP嵌段的质子化,这种共聚物是一种弱聚电解质。该理论考虑了非线性离子屏蔽,并预测了离子浓度和有效德拜长度的强烈位置依赖性。我们考虑了局部德拜长度比核半径小的情况以及局部德拜长度比核半径大的情况。我们发现,即使在一个胶束核内部,有效(局部)pH也不均匀,因此核的质子化不均匀,表面附近电荷密度更高。在许多情况下,核电荷集中在一个相对较薄的表面层中。考虑到非平衡胶束的统计权重及其连续演化,我们表明典型的嵌段共聚物或表面活性剂胶束的形成和解离动力学可能极其缓慢。因此,如果胶束足够大,在真正的(平衡)临界胶束浓度(c.m.c.)下的胶束形成会被完全抑制(涉及天文时间尺度)。引入一个“表观”临界胶束浓度(c.m.c.*)来解释这种效应。表观c.m.c.*可能比真正的平衡c.m.c.高得多,即这些系统中存在显著的滞后现象。我们还根据实验时间尺度确定了胶束亚稳性的范围。