ICREA, 23 Passeig Lluis Companys, Barcelona 08010, Spain.
J Chem Phys. 2010 Nov 7;133(17):174905. doi: 10.1063/1.3505146.
The interaction of amphiphilic polymers with small colloids, capable to reversibly stick onto the chains, is studied. Adhesive small colloids in solution are able to dynamically bind two polymer segments. This association leads to topological changes in the polymer network configurations, such as looping and cross-linking, although the reversible adhesion permits the colloid to slide along the chain backbone. Previous analyses only consider static topologies in the chain network. We show that the sliding degree of freedom ensures the dominance of small loops, over other structures, giving rise to a new perspective in the analysis of the problem. The results are applied to the analysis of the equilibrium between colloidal particles and star polymers, as well as to block copolymer micelles. The results are relevant for the reversible adsorption of silica particles onto hydrophilic polymers, used in the process of formation of mesoporous materials of the type SBA or MCM, cross-linked cyclodextrin molecules threading on the polymers and forming the structures known as polyrotaxanes. Adhesion of colloids on the corona of the latter induce micellization and growth of larger micelles as the number of colloids increase, in agreement with experimental data.
研究了具有能够可逆附着在链上的小胶体的两亲聚合物的相互作用。溶液中的粘性小胶体能够动态地结合两个聚合物链段。这种缔合导致聚合物网络构型的拓扑变化,例如环化和交联,尽管可逆附着允许胶体沿链主链滑动。以前的分析仅考虑了链网络中的静态拓扑。我们表明,滑动自由度确保了小环的主导地位,而不是其他结构,从而为分析问题提供了新的视角。结果适用于胶体颗粒和星形聚合物之间的平衡分析,以及嵌段共聚物胶束。这些结果对于亲水聚合物上二氧化硅颗粒的可逆吸附很重要,该过程用于形成 SBA 或 MCM 类型的介孔材料,交联环糊精分子在聚合物上穿线并形成称为聚轮烷的结构。胶体在后者的冠上的粘附诱导胶束化和较大胶束的生长,随着胶体数量的增加,这与实验数据一致。