共聚物
氮丙啶
路易斯酸
化学
高分子化学
乙烯
磺酰
杰纳斯
块(置换群论)
环氧乙烷
氧化物
催化作用
有机化学
聚合物
材料科学
纳米技术
烷基
数学
组合数学
戒指(化学)
作者
Qilei Song,Hong Qiu,Lijun Liu,Guangzhao Zhang,Frédéric Peruch,Stéphane Carlotti,Junpeng Zhao
标识
DOI:10.1002/anie.202300187
摘要
One-step sequence-selective block copolymerization requires stringent catalytic control of monomers relative activity and enchainment order. It has been especially rare for An Bm -type block copolymers from simple binary monomer mixtures. Here, ethylene oxide (EO) and N-sulfonyl aziridine (Az) compose a valid pair provided with a bicomponent metal-free catalyst. Optimal Lewis acid/base ratio allows the two monomers to strictly block-copolymerize in a reverse order (EO-first) as compared with the conventional anionic route (Az-first). Livingness of the copolymerization facilitates one-pot synthesis of multiblock copolymers by addition of mixed monomers in batches. Calculation results reveal that a Janus effect of Lewis acid on the two monomers is key to enlarge the activity difference and reverse the enchainment order.
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