School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, 430074, Wuhan, China.
Nat Commun. 2023 Mar 23;14(1):1622. doi: 10.1038/s41467-023-37334-x.
Switchable catalysis promises exceptional efficiency in synthesizing polymers with ever-increasing structural complexity. However, current achievements in such attempts are limited to constructing linear block copolymers. Here we report a visible light regulated switchable catalytic system capable of synthesizing hyperbranched polymers in a one-pot/two-stage procedure with commercial glycidyl acrylate (GA) as a heterofunctional monomer. Using (salen)CoCl (1) as the catalyst, the ring-opening reaction under a carbon monoxide atmosphere occurs with high regioselectivity (>99% at the methylene position), providing an alkoxycarbonyl cobalt acrylate intermediate (2a) during the first stage. Upon exposure to light, the reaction enters the second stage, wherein 2a serves as a polymerizable initiator for organometallic-mediated radical self-condensing vinyl polymerization (OMR-SCVP). Given the organocobalt chain-end functionality of the resulting hyperbranched poly(glycidyl acrylate) (hb-PGA), a further chain extension process gives access to a core-shell copolymer with brush-on-hyperbranched arm architecture. Notably, the post-modification with 2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPO) affords a metal-free hb-PGA that simultaneously improves the toughness and glass transition temperature of epoxy thermosets, while maintaining their storage modulus.
可切换催化在合成具有不断增加结构复杂性的聚合物方面具有出色的效率。然而,目前在这些尝试中取得的成就仅限于构建线性嵌段共聚物。在这里,我们报告了一种可见光调控的可切换催化体系,该体系能够以一锅两步法合成超支化聚合物,以商业的丙烯酸缩水甘油酯 (GA) 作为杂官能单体。使用 (salen)CoCl(1) 作为催化剂,在一氧化碳气氛下的开环反应具有高区域选择性 (>99%在亚甲基位置),在第一阶段提供了烷氧基羰基钴丙烯酸酯中间体 (2a)。暴露在光线下后,反应进入第二阶段,其中 2a 用作有机金属介导的自由基自缩合乙烯基聚合 (OMR-SCVP) 的可聚合引发剂。鉴于所得超支化聚(丙烯酸缩水甘油酯) (hb-PGA) 的有机钴链端官能团,进一步的链延伸过程可获得具有刷状超支化臂结构的核壳共聚物。值得注意的是,用 2,2,6,6-四甲基哌啶-1-氧基 (TEMPO) 进行后修饰可得到无金属的 hb-PGA,同时提高了环氧树脂热固性塑料的韧性和玻璃化转变温度,同时保持其储能模量。