Bidentate selenium-based chalcogen bond catalyzed cationic polymerization of p -methoxystyrene

The application of selenium-based non-covalent bond catalysis in living cationic polymerization has rarely been reported. In this work, the cationic polymerization of -methoxystyrene ( MOS) was performed using a bidentate selenium bond catalyst - a new water-tolerant Lewis acid catalyst. A polymer w...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2024-01, Vol.60 (10), p.1321-1324
Hauptverfasser: Cao, Luya, Chen, Hao, Fu, Hongjun, Xian, Ji, Cao, Hongzhang, Pan, Xiaobo, Wu, Jincai
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Sprache:eng
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Zusammenfassung:The application of selenium-based non-covalent bond catalysis in living cationic polymerization has rarely been reported. In this work, the cationic polymerization of -methoxystyrene ( MOS) was performed using a bidentate selenium bond catalyst - a new water-tolerant Lewis acid catalyst. A polymer with controllable molecular weight and narrow molecular weight distribution can be obtained at room temperature, with a maximum molecular weight of 23.3 kDa. This selenium bond compound can also catalyze the controllable cationic polymerization of -methoxy styrene under environmental conditions. By changing the monomer feeding ratio, a secondary feeding experiment and DFT analysis, it is shown that the selenium bond catalyst can induce polymer chain growth by reversibly activating dormant covalent bonds (C-OH).
ISSN:1359-7345
1364-548X
DOI:10.1039/d3cc05516g