Institut Laue-Langevin, 71 Avenue des Martyrs, 38042 Grenoble, France.
Soft Matter. 2019 Oct 23;15(41):8266-8271. doi: 10.1039/c9sm01138b.
This work presents well-defined and switchable micelles of block copolymers consisting of the two anionic polyelectrolytes sodium polyacrylate (NaPA) and sodium polystyrene sulfonate (NaPSS). Micellization occurs due to the specific binding of Ca2+ to acrylate groups, which results in neutralization of the corresponding block and thereby formation of the hydrophobic core of the micelles. In contrast, the PSS block remains charged and forms the stabilizing shell. Micellization is triggered by variations of the Ca2+ concentration or the temperature and is a fully reversible and repeatable process. Small-angle neutron scattering (SANS) could unambiguously reveal the structure of the micelles, using a partially deuterated polymer and the contrast variation technique. Considering the variety of metal cations and their broad spectrum of interactions with polyelectrolytes, this new class of like-charged block copolymers opens the door to a broad range of switchable and responsive polyelectrolyte-based systems.
本文提出了由两种阴离子型高分子电解质聚(丙烯酸)钠(NaPA)和聚苯乙烯磺酸钠(NaPSS)组成的具有明确结构和可切换性的胶束。胶束的形成是由于 Ca2+与丙烯酸盐基团的特异性结合,导致相应嵌段的中和,从而形成胶束的疏水性内核。相比之下,PSS 嵌段仍然带电荷,并形成稳定的壳层。胶束的形成是通过 Ca2+浓度或温度的变化来触发的,这是一个完全可逆和可重复的过程。使用部分氘代聚合物和对比变化技术的小角中子散射(SANS)可以明确揭示胶束的结构。考虑到金属阳离子的多样性及其与聚电解质的广泛相互作用,这种新型的同电荷嵌段共聚物为一系列可切换和响应的基于聚电解质的系统开辟了道路。