论文标题

非附加聚合物胶体稳定理论

Theory of colloidal stabilization by unattached polymers

论文作者

Shvets, Alexey A.

论文摘要

具有均匀分布颗粒的稳定胶体分散体对于许多技术应用很重要。由于布朗运动,胶体颗粒彼此之间存在恒定的碰撞,这通常会导致其远程范德华吸引力驱动的聚集。结果,胶体系统通常倾向于沉淀。已经设计了许多方法来最大程度地减少胶体颗粒之间的远距离吸引力的影响或覆盖吸引力的影响以提供胶体稳定性。先前对自由聚合物诱导(FPI)稳定的理论研究是基于涉及不受控制的近似值的过度简单模型。甚至耗尽稳定现象的最基本特征也未知。目前尚不清楚PI排斥如何取决于溶液参数,聚合物结构和单体/表面相互作用。自由聚合物链被建模为在自隔离的分子场中随机行走,满足了扩散类似于扩散的整数分差方程。作为分子场,我们使用的化学势可以将半脱水聚合物溶液表示为病毒式膨胀,我们仅考虑了聚合物溶液的第二和第三病毒系数。将参数变化,例如聚合物刚度,聚合物长度,聚合物浓度和溶剂状态(如theta溶剂),无论它是用于纯排斥胶体表面,带有移植聚合物层的表面还是表面,我们都可以使由于粒子和稳定性的稳定性而造成的自由聚合物,从而使我们能够增强稳定性的稳定性。

Stable colloidal dispersions with evenly distributed particles are important for many technological applications. Due to Brownian motion colloidal particles have constant collisions with each other which often lead to their aggregation driven by the long range van der Waals attraction. As a result the colloidal systems often tend to precipitate. A number of methods have been devised to minimize the effect of long-range van der Waals attraction between colloidal particles or to override the influence of the attraction in order to provide the colloidal stability.In the PhD thesis we investigated the colloidal stabilization in solutions of free polymers which is commonly referred to as depletion stabilization. Previous theoretical studies of free-polymer induced (FPI) stabilization were based on oversimplified models involving uncontrolled approximations. Even the most basic features of the depletion stabilization phenomenon were unknown. It was unclear how the PI repulsion depends on the solution parameters, polymer structure and monomer/surface interactions.The free polymer chains were modeled as random walks in a self-consistent molecular field that satisfied to diffusion-like integro-differential equation. As the molecular field we used the chemical potential that for semi-dilute polymer solution can be represented as a virial expansion where we took into account only second and third virial coefficients of the polymer solution. Varying the parameters like polymer stiffness, polymer length, polymer concentration and solvent regime (like theta solvent) whether it is for purely repulsive colloidal surface, adsorbed surface or surface with grafted polymer layer we were able to enhance the repulsive barrier due to the free polymers between the particles and therefore found conditions for kinetic stabilization of the system.

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