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光氧化还原催化在乙烯基醚光控阳离子聚合中的应用。

Photoredox Catalysis in Photocontrolled Cationic Polymerizations of Vinyl Ethers.

机构信息

Cornell University, Ithaca, New York 14853, United States.

出版信息

Acc Chem Res. 2022 Jul 19;55(14):1960-1971. doi: 10.1021/acs.accounts.2c00252. Epub 2022 Jun 30.

Abstract

Advances in photocontrolled polymerizations have expanded the scope of polymer architectures and structures that can be synthesized for various applications. The majority of these polymerizations have been developed for radical processes, which limits the diversity of monomers that can be used in macromolecular design. More recent developments of photocontrolled cationic polymerizations have taken a step toward addressing this limitation and have expanded the palette of monomers that can be used in stimuli-regulated polymerizations, enabling the synthesis of previously inaccessible polymeric structures. This Account will detail our group's studies on cationic polymerization processes where chain growth is regulated by light and highlight how these methods can be combined with other stimuli-controlled polymerizations to precisely dictate macromolecular structure.Photoinitiated cationic polymerizations are well-studied and important processes that have control over initiation. However, we wanted to develop systems where we had spatiotemporal control over both polymer initiation and chain growth. This additional command over the reaction provides the ability to manipulate the growing polymer with an external stimulus during a polymerization, which can be used to control structure. To achieve this goal, we set out to develop a method to photoreversibly generate a cation at a growing chain end that could participate in a controlled polymerization process. We took inspiration from previous work on cationic degenerate chain transfer polymerizations of vinyl ethers that used thiocarbonylthio chain transfer agents. These polymerizations were initiated by a strong acid and gave well-defined poly(vinyl ether)s. We posited that we could remove the acid initiator in these systems and reversibly oxidize the thiocarbonylthio chain ends in these reactions with a photocatalyst to give a photocontrolled cationic polymerization of vinyl ethers. This Account will focus on our journey to discover cationic photocontrolled polymerizations. We will summarize our initial developments and detail our mechanistic understanding of these reactions using both organic and inorganic based photocatalysts, and we will outline more recent efforts to expand cationic degenerate chain transfer polymerizations to other thioacetal initiators. Finally, we will detail how these photocontrolled cationic polymerizations can be used to switch monomer selectivity using light to control polymer structure. At the end of the Account, we will discuss our vision for future potential applications of these photocontrolled cationic polymerizations in the synthesis of novel block copolymers and next generation cross-linked networks.

摘要

光控聚合的进展扩大了可用于各种应用的聚合物结构和架构的范围。这些聚合大多数都是针对自由基过程开发的,这限制了可用于大分子设计的单体的多样性。最近,光控阳离子聚合的发展在一定程度上解决了这一限制,并扩展了可用于刺激响应聚合的单体范围,使以前无法获得的聚合物结构的合成成为可能。本综述将详细介绍我们小组在光控阳离子聚合过程中的研究,其中链增长受光调控,并强调这些方法如何与其他刺激控制聚合相结合,以精确控制大分子结构。光引发阳离子聚合是研究得很好且很重要的过程,可以控制引发。然而,我们希望开发一种系统,该系统可以对聚合物的引发和链增长进行时空控制。这种对反应的额外控制能够在聚合过程中使用外部刺激来操纵正在生长的聚合物,从而可以控制结构。为了实现这一目标,我们着手开发一种在生长链末端光可逆生成阳离子的方法,该阳离子可以参与受控聚合过程。我们从以前关于乙烯基醚的阳离子简并链转移聚合的工作中获得灵感,该工作使用了硫羰基硫链转移剂。这些聚合由强酸引发,并得到了具有良好定义的聚(乙烯基醚)。我们假设可以在这些体系中去除酸引发剂,并在这些反应中使用光催化剂可逆地氧化硫羰基硫链末端,从而得到乙烯基醚的光控阳离子聚合。本综述将重点介绍我们发现阳离子光控聚合的历程。我们将总结我们的初步发展,并详细介绍我们对这些反应的机械理解,使用有机和无机基光催化剂,并概述最近扩展阳离子简并链转移聚合到其他硫缩醛引发剂的努力。最后,我们将详细介绍如何使用光来控制聚合物结构来切换单体选择性,从而使用这些光控阳离子聚合。在综述的结尾,我们将讨论我们对这些光控阳离子聚合在新型嵌段共聚物和下一代交联网络合成中的未来潜在应用的展望。

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