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聚合物化学中的狄尔斯-阿尔德反应趋势。

Trends in the Diels-Alder reaction in polymer chemistry.

机构信息

Institut Charles Gerhardt, CNRS, Université de Montpellier, ENSCM, Montpellier, France.

出版信息

Chem Soc Rev. 2021 Oct 4;50(19):11055-11097. doi: 10.1039/d0cs01382j.

Abstract

The Diels-Alder (DA) reaction is regarded as quite a useful strategy in organic and macromolecular syntheses. The reversibility of this reaction and the advent of self-repair technology, as well as other applications in controlled macromolecular architectures and crosslinking, have strongly boosted the research activity, which is still attracting a huge interest in both academic and industrial research. The DA reaction is a simple and scalable toolbox. Though it is well-established that furan/maleimide is the most studied diene/dienophile couple, this perspective article reports strategies using other reversible systems with deeper features on other types of diene/dienophile pairs being either petro-sourced (cyclopentadiene, anthracene) or bio-sourced (muconic and sorbic acids, myrcene and farnesene derivatives, eugenol, cardanol). This review is composed of four sections. The first one briefly recalls the background on the DA reactions involving cyclodimerizations, dienes, and dienophiles, parameters affecting the reaction, while the second part deals with the furan/maleimide reaction. The third one deals with petro-sourced and bio-sourced (or products becoming bio-sourced) reactants involved in DA reactions are also listed and discussed. Finally, the authors' opinion is given on the potential future of the crosslinking-decrosslinking reaction, especially regarding the process (, key temperatures of decrosslinking) or possibly monocomponents. It presents both fundamental and applied research on the DA reaction and its applications.

摘要

Diels-Alder(DA)反应被认为是有机和高分子合成中非常有用的策略。该反应的可逆性以及自修复技术的出现,以及在可控高分子结构和交联中的其他应用,极大地推动了研究活动,这在学术和工业研究中仍然吸引着巨大的兴趣。DA 反应是一个简单且可扩展的工具包。尽管呋喃/马来酰亚胺是研究最多的二烯/亲二烯对,但本文着眼于使用其他具有更深层次特征的可逆体系的策略,这些体系涉及其他类型的二烯/亲二烯对,包括源自石油的(环戊二烯、蒽)或生物源的(富马酸和衣康酸、苎烯和法呢烯衍生物、丁香酚、腰果酚)。本文综述由四个部分组成。第一部分简要回顾了涉及环二聚化、二烯和亲二烯的 DA 反应的背景、影响反应的参数,第二部分涉及呋喃/马来酰亚胺反应。第三部分涉及石油源和生物源(或成为生物源的产物)反应物也列在其中并进行了讨论。最后,作者对交联-解交联反应的潜在未来,特别是关于过程(解交联的关键温度)或可能的单一组分,给出了自己的看法。它介绍了 DA 反应及其应用的基础研究和应用研究。

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