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σ-键复分解反应与聚合催化的融合:稀土金属配合物、端基官能化及应用前景的深入见解。

Merging σ-Bond Metathesis with Polymerization Catalysis: Insights into Rare-Earth Metal Complexes, End-Group Functionalization, and Application Prospects.

机构信息

Institute of Polymer Chemistry, University of Stuttgart, Pfaffenwaldring 55, 70569, Stuttgart, Germany.

University Eye Hospital Tübingen, Elfriede-Aulhorn-Strasse 7, 72076, Tübingen, Germany.

出版信息

Macromol Rapid Commun. 2024 Aug;45(15):e2400122. doi: 10.1002/marc.202400122. Epub 2024 Jun 3.

Abstract

Polymers with well-defined structures, synthesized through metal-catalyzed processes, and having end groups exhibiting different polarity and reactivity than the backbone, are gaining considerable attention in both scientific and industrial communities. These polymers show potential applications as fundamental building blocks and additives in the creation of innovative functional materials. Investigations are directed toward identifying the most optimal and uncomplicated synthetic approach by employing a combination of living coordination polymerization mediated by rare-earth metal complexes and C-H bond activation reaction by σ-bond metathesis. This combination directly yields catalysts with diverse functional groups from a single precursor, enabling the production of terminal-functionalized polymers without the need for sequential reactions, such as termination reactions. The utilization of this innovative methodology allows for precise control over end-group functionalities, providing a versatile approach to tailor the properties and applications of the resulting polymers. This perspective discusses the principles, challenges, and potential advancements associated with this synthetic strategy, highlighting its significance in advancing the interface of metalorganic chemistry, polymer chemistry, and materials science.

摘要

具有明确结构的聚合物,通过金属催化过程合成,其端基具有与主链不同的极性和反应性,在科学界和工业界都引起了相当大的关注。这些聚合物作为基本构建块和添加剂,在创新功能材料的创造中具有潜在的应用。研究的目的是通过采用由稀土金属配合物介导的活配位聚合和σ键复分解反应引发的 C-H 键活化反应的组合,确定最佳和最简单的合成方法。这种组合可以直接从单个前体中生成具有多种官能团的催化剂,从而无需进行终止反应等顺序反应即可生产端基官能化聚合物。这种创新方法可以精确控制端基官能团,为定制所得聚合物的性质和应用提供了一种通用方法。本文讨论了这种合成策略的原理、挑战和潜在进展,强调了它在推进金属有机化学、聚合物化学和材料科学界面方面的重要性。

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