原子转移自由基聚合
催化作用
分散性
共聚物
聚合
聚合物
共价键
光化学
自由基聚合
材料科学
化学
高分子化学
水溶液
钴介导的自由基聚合
化学工程
Atom(片上系统)
光诱导电子转移
组合化学
纳米技术
块(置换群论)
可逆加成-断裂链转移聚合
电子转移
链式转移
铜
作者
Qiongshan Zhang,Congying Song,Xue Li,Xuanzi Ye,Kaiyue Jiang,Bin Zhang,Tao Cai,Xiaodong Zhuang,Fuzhen Xuan
标识
DOI:10.1002/anie.202518707
摘要
Abstract The concurrent development of innovative photocatalysts (PCs) that achieve fast reaction rates while ensuring efficient catalyst recycling remains a significant challenge for large‐scale polymer production. Herein, we present a “two‐in‐one” strategy that combines a photoactive component with a cyclic trinuclear Cu(I)‐incorporated triangular complex as the intrinsic copper source within three imine‐linked covalent organic frameworks (COFs). As‐synthesized photoactive Cu(I)‐containing COFs demonstrated exceptional performance in aqueous photoinduced atom transfer radical polymerization (photo‐ATRP), achieving a record‐breaking turnover number (TON) of 1640 and turnover frequency (TOF) of 82 min −1 , while maintaining narrow polymer dispersity of 1.20. Such performance surpasses previously reported heterogeneous PCs designed for photo‐ATRP. Notably, the COF‐encapsulated “two‐in‐one” catalytic design endows the system with remarkable operational stability and near‐quantitative catalyst recovery. More importantly, such new COFs demonstrate outstanding process compatibility, enabling scalable production of well‐defined block copolymers in a single microreactor, without intermediate purification.
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