| Literature DB >> 28792119 |
Hua Wang1,2, Feng Zhou2,3, Gerui Ren2,4, Qinheng Zheng2, Hongli Chen2, Bing Gao2, Liana Klivansky5, Yi Liu5, Bin Wu3, Qingfeng Xu3, Jianmei Lu3, K Barry Sharpless2, Peng Wu1.
Abstract
The SuFEx-based polycondensation between bisalkylsulfonyl fluorides (AA monomers) and bisphenol bis(t-butyldimethylsilyl) ethers (BB monomers) using [Ph3 P=N-PPh3 ]+ [HF2 ]- as the catalyst is described. The AA monomers were prepared via the highly reliable Michael addition of ethenesulfonyl fluoride and amines/anilines while the BB monomers were obtained from silylation of bisphenols by t-butyldimethylsilyl chloride. With these reactions, a remarkable diversity of monomeric building blocks was achieved by exploiting readily available amines, anilines, and bisphenols as starting materials. The SuFEx-based polysulfonate formation reaction exhibited excellent efficiency and functional group tolerance, producing polysulfonates with a variety of side chain functionalities in >99 % conversion within 10 min to 1 h. When bearing an orthogonal group on the side chain, the polysulfonates can be further functionalized via click-chemistry-based post-polymerization modification.Entities:
Keywords: SuFEx reaction; bifluoride salt; click chemistry; ethenesulfonyl fluoride; polysulfonate formation
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Year: 2017 PMID: 28792119 PMCID: PMC5665377 DOI: 10.1002/anie.201701160
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336