Baddam Vikram, Missonen Reetta, Hietala Sami, Tenhu Heikki
Department of Chemistry, University of Helsinki, PB 55, FIN-00014 Helsinki, Finland.
Macromolecules. 2019 Sep 10;52(17):6514-6522. doi: 10.1021/acs.macromol.9b01327. Epub 2019 Aug 22.
Mechanisms of the phase separation and remixing of cationic PEG-containing block copolymers have been investigated in aqueous lithium triflate solutions. The polycation was poly(vinylbenzyl trimethylammonium triflate). We have previously reported on one such block copolymer, which upon cooling of a hot clear solution first underwent phase separation into a turbid colloid and, later, partially cleared again with further cooling. To better understand the balance of various interactions in the solutions/dispersions, a series of polymers with varying DP of the cationic block was synthesized. From one of the polymers, the alkyl end group (a fragment of the chain transfer agent) was removed. The length of the cationic block affected critically the behavior, but the hydrophobic end group had a minimal effect. Polymers with a short cationic block turn cloudy and partially clear again during a temperature decrease, whereas those with a long cationic block phase separate and slowly precipitate and remix only when heated. Phase separation takes place via particle formation, and we suggest different mechanisms for colloidal stabilization of particles composed of short or long chains.
在三氟甲磺酸锂水溶液中研究了含阳离子聚乙二醇的嵌段共聚物的相分离和再混合机制。聚阳离子为聚(乙烯基苄基三甲基铵三氟甲磺酸盐)。我们之前报道过一种这样的嵌段共聚物,热澄清溶液冷却时首先会相分离成浑浊胶体,随后进一步冷却时又会部分澄清。为了更好地理解溶液/分散体中各种相互作用的平衡,合成了一系列阳离子嵌段聚合度不同的聚合物。从其中一种聚合物上去除了烷基端基(链转移剂的片段)。阳离子嵌段的长度对行为有至关重要的影响,但疏水端基的影响最小。阳离子嵌段短的聚合物在温度降低时会变浑浊并再次部分澄清,而阳离子嵌段长的聚合物会相分离并缓慢沉淀,只有加热时才会再混合。相分离通过颗粒形成发生,我们提出了由短链或长链组成的颗粒的胶体稳定化的不同机制。