Hosford Brandon M, Ramos William, Lamb Jessica R
Department of Chemistry, University of Minnesota-Twin Cities 207 Pleasant Street SE Minneapolis MN 55455 USA
Chem Sci. 2024 Jul 30;15(33):13523-13530. doi: 10.1039/d4sc02511c. eCollection 2024 Aug 22.
An ongoing challenge in polymer chemistry is accessing diverse block copolymers from multiple polymerization mechanisms and monomer classes. One strategy to accomplish this goal without intermediate compatibilization steps is the use of universal mediators. Thiocarbonyl thio (TCT) functional groups are well-known mediators to combine radical with either cationic or anionic polymerization, but a sequential cationic-anionic universal mediator system has never been reported. Herein, we report a TCT universal mediator that can sequentially perform photocontrolled cationic polymerization and thioacyl anionic group transfer polymerization to access poly(ethyl vinyl ether)--poly(thiirane) polymers for the first time. Thermal analyses of these block copolymers provide evidence of microphase separation. The success of this system, along with the established compatibility of radical polymerization, enabled us to further chain extend the cationic-anionic diblock using radical polymerization of -isopropylacrylamide. The resulting terpolymer represents the first example of a triblock made from three different monomer classes incorporated three different mechanisms without any end-group modification steps. The development of this simple, sequential synthesis using a universal mediator approach opens up new possibilities by providing facile access to diverse block copolymers of vinyl ethers, thiiranes, and acrylamides.
聚合物化学中一个持续存在的挑战是如何通过多种聚合机理和单体类型来制备各种嵌段共聚物。在不经过中间相容化步骤的情况下实现这一目标的一种策略是使用通用介导剂。硫代羰基硫(TCT)官能团是众所周知的可将自由基聚合与阳离子聚合或阴离子聚合相结合的介导剂,但阳离子-阴离子顺序通用介导剂体系尚未见报道。在此,我们报道了一种TCT通用介导剂,它能够依次进行光控阳离子聚合和硫酰基阴离子基团转移聚合,首次制备出聚(乙基乙烯基醚)-聚(硫杂环丙烷)聚合物。对这些嵌段共聚物的热分析提供了微相分离的证据。该体系的成功以及已确立的自由基聚合相容性,使我们能够使用N-异丙基丙烯酰胺的自由基聚合进一步扩链阳离子-阴离子二嵌段。所得的三元共聚物代表了首例由三种不同单体类型通过三种不同机理合成且无需任何端基修饰步骤的三嵌段聚合物。这种使用通用介导剂方法的简单顺序合成方法的开发,通过提供简便途径来制备乙烯基醚、硫杂环丙烷和丙烯酰胺的各种嵌段共聚物,开辟了新的可能性。