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一种环状钌苯乙烯引发剂平台提高了开环易位聚合反应的活性。

A Cyclic Ruthenium Benzylidene Initiator Platform Enhances Reactivity for Ring-Expansion Metathesis Polymerization.

出版信息

J Am Chem Soc. 2021 May 19;143(19):7314-7319. doi: 10.1021/jacs.1c03491. Epub 2021 May 7.

Abstract

Ring-expansion metathesis polymerization (REMP) has shown potential as an efficient strategy to access cyclic macromolecules. Current approaches that utilize cyclic olefin feedstocks suffer from poor functional group tolerance, low initiator stability, and slow reaction kinetics. Improvements to current initiators will address these issues in order to develop more versatile and user-friendly technologies. Herein, we report a reinvigorated tethered ruthenium-benzylidene initiator, , that utilizes design features from ubiquitous Grubbs-type initiators that are regularly applied in linear polymerizations. We report the controlled synthesis of functionalized cyclic poly(norbornene)s and demonstrate that judicious ligand modifications not only greatly improve kinetics but also lead to enhanced initiator stability. Overall, is an adaptable platform for the study and application of cyclic macromolecules via REMP.

摘要

环扩张复分解聚合(REMP)已显示出作为一种有效策略来获取环状大分子的潜力。目前利用环烯烃原料的方法存在官能团耐受性差、引发剂稳定性低和反应动力学慢等问题。改进当前的引发剂将解决这些问题,以便开发更通用和更易用的技术。在此,我们报告了一种重新激活的 tethered 钌-亚苄基引发剂 ,它利用了常见的 Grubbs 型引发剂的设计特点,这些引发剂经常应用于线性聚合中。我们报告了功能化环状聚(降冰片烯)的可控合成,并证明了明智的配体修饰不仅极大地提高了动力学,而且还提高了引发剂的稳定性。总的来说, 是通过 REMP 研究和应用环状大分子的一个适应性平台。

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