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Unsymmetrical difunctionalization of cyclooctadiene under continuous flow conditions: expanding the scope of ring opening metathesis polymerization

机译:连续流动条件下环辛二烯的不对称双官能化:扩大开环易位聚合的范围

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摘要

Functionalized cyclooctenes (FCOEs) are important monomers in ring-opening metathesis polymerization (ROMP). Herein, a new library of disubstituted FCOEs bearing adjacent heteroatoms were synthesized and applied in ROMP. To address the issues associated with the handling of the reactive thienyl chloride intermediate, a two-step continuous flow method has been developed to prepare 5-thio-6-chlorocyclooctene compounds from abundant cyclooctadiene starting materials. These newly synthesized FCOE monomers were subsequently polymerized through ROMP, giving rise to a range of functionalized polymers with high molecular weights. Furthermore, we demonstrated that the thermal properties of these polymers could be fine-tuned by changing the functional groups in the FCOE monomers. We expect that this functionalization-polymerization strategy will enable the preparation of a range of polymeric materials with complex structures.
机译:官能化的环辛烯(FCOE)是开环易位聚合(ROMP)中的重要单体。本文中,合成了带有相邻杂原子的双取代FCOEs的新文库,并将其应用于ROMP。为了解决与反应性噻吩基氯中间体的处理有关的问题,已经开发了一种两步连续流动方法,以从丰富的环辛二烯起始原料制备5-硫代6-氯环辛烯化合物。这些新合成的FCOE单体随后通过ROMP进行聚合,产生了一系列具有高分子量的官能化聚合物。此外,我们证明了可以通过改变FCOE单体中的官能团来微调这些聚合物的热性能。我们希望这种功能化-聚合策略将能够制备一系列具有复杂结构的聚合物材料。

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