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烯丙基环氧化合物增加用于开环易位聚合的环状烯烃单体的应变能。

Allylic Epoxides Increase the Strain Energy of Cyclic Olefin Monomers for Ring-Opening Metathesis Polymerization.

作者信息

Sylvester Kyle R, Zovinka Jessa R, Milrod Maya L, Stubin Alexandra K, Rojas-Merchan Angela, Alexander Kayla, Elling Benjamin R

机构信息

Department of Chemistry, Wesleyan University, 52 Lawn Ave, Middletown, CT, USA.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202414872. doi: 10.1002/anie.202414872. Epub 2024 Oct 31.

Abstract

Ring-opening metathesis polymerization (ROMP) is an effective method for synthesizing functional polymers, but since the technique typically relies on high ring strain cyclic olefins, the most common monomers are norbornene derivatives. The reliance on one class of monomer limits the obtainable properties of ROMP polymers. In this work, we investigate new bicyclic monomers synthesized via epoxidation of commercial dienes. DFT estimates of these monomers' ring strains suggests a significant increase in strain for cyclic olefins containing allylic epoxides. We found that the eight-membered (3,4-COO) and five-membered (CPO) cyclic olefins were particularly effective for ROMP. CPO was of especially intriguing due to its excellent polymerizability when compared to the limited reactivity of other five-membered rings. Unlike polynorbornenes, the resulting polymers of both monomers displayed glass transition temperatures well below room temperature. Interestingly, poly(3,4-COO) showed both high stereo- and regioregularity while poly(CPO) showed little regularity. Both polymers could be readily modified via post-polymerization ring-opening of the reactive allylic epoxides. With a high epoxide density in poly(CPO), CPO is an exciting new ROMP monomer that is easily synthesized, can be polymerized to high conversion at room temperature, and may be facilely modified to yield a wide range of functional materials.

摘要

开环易位聚合(ROMP)是合成功能聚合物的有效方法,但由于该技术通常依赖于高环张力的环状烯烃,最常见的单体是降冰片烯衍生物。对一类单体的依赖限制了ROMP聚合物可获得的性能。在这项工作中,我们研究了通过商业二烯烃环氧化合成的新型双环单体。这些单体环张力的密度泛函理论(DFT)估计表明,含有烯丙基环氧化物的环状烯烃的张力显著增加。我们发现八元环(3,4-COO)和五元环(CPO)环状烯烃对ROMP特别有效。与其他五元环有限的反应性相比,CPO因其优异的聚合性而特别引人关注。与聚降冰片烯不同,这两种单体所得聚合物的玻璃化转变温度均远低于室温。有趣的是,聚(3,4-COO)表现出高立构规整度和区域规整度,而聚(CPO)则几乎没有规整度。两种聚合物都可以通过反应性烯丙基环氧化物的后聚合开环轻松改性。由于聚(CPO)中环氧密度高,CPO是一种令人兴奋的新型ROMP单体,它易于合成,可在室温下聚合至高转化率,并且可以很容易地改性以产生各种功能材料。

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