光控自由基聚合合成超高分子量聚合物

0 CHEMISTRY, MULTIDISCIPLINARY Nature synthesis Pub Date : 2025-01-10 DOI:10.1038/s44160-024-00710-6
Shilong Zhu, Weina Kong, Shuangqi Lian, Ao Shen, Steven P. Armes, Zesheng An
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引用次数: 0

摘要

与传统的热引发自由基聚合相比,光控自由基聚合具有反应条件温和、环境友好、聚合速率快、端基保真度高和时空可控等特点。获得具有精确定义的分子量、结构和拓扑结构的超高分子量(UHMW)聚合物需要高度的活特性和最小的副反应,这一直是聚合物合成中的一个长期挑战。近年来光控自由基聚合技术的发展使合成超高分子量聚合物变得容易。本文讨论了通过光控自由基聚合制备各种超高分子量聚合物的方法,包括光干扰可逆加成-碎片链转移(RAFT)聚合、光诱导电子/能量转移- RAFT聚合、光酶RAFT聚合、光控原子转移自由基聚合和光控有机碲介导的自由基聚合。其次概述了超高分子量聚合物作为高性能材料的应用。最后,对这一新兴领域的发展提出了展望。具有超高分子量的明确定义的乙烯基聚合物有望作为高性能材料使用,并且现在通过光控自由基聚合越来越容易获得。本文综述了该类聚合物的合成方法及其潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Photocontrolled radical polymerization for the synthesis of ultrahigh-molecular-weight polymers
Compared with conventional thermally initiated radical polymerization, photocontrolled radical polymerization offers mild, environmentally friendly reaction conditions, fast polymerization rates, high end-group fidelity and spatiotemporal control. Access to ultrahigh-molecular-weight (UHMW) polymers with precisely defined molecular weights, structures and topologies requires a high degree of living character with minimal side reactions and has been a longstanding challenge in polymer synthesis. The recent development of photocontrolled radical polymerization has enabled facile synthesis of UHMW polymers. Here we discuss methods for producing various UHMW polymers via photocontrolled radical polymerization, including photoiniferter reversible addition–fragmentation chain transfer (RAFT) polymerization, photoinduced electron/energy transfer–RAFT polymerization, photoenzymatic RAFT polymerization, photocontrolled atom transfer radical polymerization and photocontrolled organotellurium-mediated radical polymerization, followed by an overview of the applications of UHMW polymers as high-performance materials. Finally, we provide our future perspective for developments in this emerging field. Well-defined vinyl polymers with ultrahigh molecular weights are promising for use as high-performance materials and are now made increasingly accessible by photocontrolled radical polymerizations. This Review discusses the methods developed for the synthesis of such polymers and their potential applications.
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