路易斯酸
单体
聚合
高分子化学
共聚物
催化作用
聚合物
沮丧的刘易斯对
活性聚合
化学
烯烃纤维
材料科学
可逆加成-断裂链转移聚合
配位聚合
活性阴离子聚合
组合化学
溶液聚合
阳离子聚合
丙烯酰胺
作者
Wuchao Zhao,Guo Zongpeng,Jianghua He,Yuetao Zhang
标识
DOI:10.1021/acsmacrolett.6c00317
摘要
The development of neutral silicon-based Lewis acids (LAs) has gained increasing attention, their use as catalysts for polymerization reactions has not yet been reported. Herein, we report a neutral silicon-based Lewis pair (LP) catalytic system composed of Si(cat R ) 2 (R = H, Cl, Br, t Bu) LAs and N-heterocyclic olefin (NHO) for the living polymerization of acrylamide monomers. The coordination behavior between monomers and Si(cat R ) 2 with varying Lewis acidities was elucidated by single-crystal X-ray diffraction and in situ NMR analysis. The Si(cat H ) 2 /NHO pair exhibited high catalytic activity and control under ambient conditions, enabling the polymerization of N, N -dimethylacrylamide with high molecular weights (up to 576 kg·mol –1 ) and low dispersities ( Đ = 1.13–1.22). MALDI-TOF-MS and chain-extension studies confirmed the living nature of the system. The scope was extended to other acrylamides, including N, N -diethylacrylamide and N, N -diallylacrylamide, allowing the synthesis of well-defined block copolymers with preserved pendant functionality and clear microphase separation behavior as confirmed by DSC. This work constructs a metal-free neutral silicon-based Lewis pair catalytic platform dedicated to the controlled synthesis of polyacrylamides, expands the library of main-group Lewis pair catalysts, and offers a novel synthetic strategy for fabricating functional precision polymers available for postpolymerization modification.
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