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扭曲酰胺的共振促进开环易位聚合反应

Resonance promoted ring-opening metathesis polymerization of twisted amides.

作者信息

Xu Mizhi, Bullard Krista K, Nicely Aja M, Gutekunst Will R

机构信息

School of Chemistry and Biochemistry , Georgia Institute of Technology , 901 Atlantic Drive NW , Atlanta , Georgia 30332 , USA . Email:

出版信息

Chem Sci. 2019 Aug 30;10(42):9729-9734. doi: 10.1039/c9sc03602d. eCollection 2019 Nov 14.

Abstract

The living ring-opening metathesis polymerization (ROMP) of an unsaturated twisted amide using the third-generation Grubbs initiator is described. Unlike prior examples of ROMP monomers that rely on angular or steric strain for propagation, this system is driven by resonance destabilization of the amide that arises from geometric constraints of the bicyclic framework. Upon ring-opening, the amide can rotate and rehybridize to give a stabilized and planar conjugated system that promotes living propagation. The absence of other strain elements in the twisted amide is supported by the inability of a carbon analogue of the monomer to polymerize and computational studies that find resonance destabilization accounts for 11.3 kcal mol of the overall 12.0 kcal mol ring strain. The twisted amide polymerization is capable of preparing high molecular weight polymers rapidly at room temperature, and post-polymerization modification combined with 2D NMR spectroscopy confirms a regioirregular polymer microstructure.

摘要

本文描述了使用第三代格拉布斯引发剂对不饱和扭曲酰胺进行的活性开环易位聚合(ROMP)。与之前依赖角应变或空间应变进行链增长的ROMP单体示例不同,该体系是由双环骨架的几何限制引起的酰胺共振失稳驱动的。开环后,酰胺可以旋转并重新杂化,形成一个稳定的平面共轭体系,从而促进活性链增长。单体的碳类似物无法聚合,以及计算研究表明共振失稳占总环应变12.0千卡/摩尔中的11.3千卡/摩尔,这些都证明了扭曲酰胺中不存在其他应变元素。扭曲酰胺聚合能够在室温下快速制备高分子量聚合物,并且聚合后修饰结合二维核磁共振光谱证实了聚合物微观结构的区域不规则性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e26/6993617/41b8bb4bb727/c9sc03602d-f1.jpg

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