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解析由三嗪-苯相互作用主导的超分子共聚反应的复杂性

Unraveling the Complexity of Supramolecular Copolymerization Dictated by Triazine-Benzene Interactions.

作者信息

Su Hao, Jansen Stef A H, Schnitzer Tobias, Weyandt Elisabeth, Rösch Andreas T, Liu Jie, Vantomme Ghislaine, Meijer E W

机构信息

Laboratory of Macromolecular and Organic Chemistry and Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

J Am Chem Soc. 2021 Oct 20;143(41):17128-17135. doi: 10.1021/jacs.1c07690. Epub 2021 Oct 6.

Abstract

Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the complexity of functional molecular systems. However, varying the composition and microstructure of copolymers through tuning the interactions between building blocks remains a challenge. Here, we report a remarkable discovery of the temperature-dependent supramolecular copolymerization of the two chiral monomers 4,4',4″-(1,3,5-triazine-2,4,6-triyl)tribenzamide () and 4,4',4″-(benzene-1,3,5-triyl)tribenzamide (). We first demonstrate in the homopolymerization of the two individual monomers that a subtle change from the central triazine to benzene in the chemical structure of the monomers significantly affects the properties of the resulting homopolymers in solution. Homopolymers formed by exhibit enhanced stability in comparison to . More importantly, through a combination of spectroscopic analysis and theoretical simulation, we reveal the complex process of copolymerization: aggregates into homopolymers at elevated temperature, and upon slow cooling gradually intercalates into the copolymers, to finally give copolymers with almost 80% alternating bonds at 10 °C. The formation of the predominantly alternating copolymers is plausibly contributed by preferred heterointeractions between triazine and benzene cores in and , respectively, at lower temperatures. Overall, this work unravels the complexity of a supramolecular copolymerization process where an intermediate heterointeraction (higher than one homointeraction and lower than the other homointeraction) presents and proposes a general method to elucidate the microstructures of copolymers responsive to temperature changes.

摘要

通过多种组分的非共价合成形成的超分子共聚物扩展了功能分子系统的复杂性。然而,通过调节构建单元之间的相互作用来改变共聚物的组成和微观结构仍然是一个挑战。在此,我们报道了两种手性单体4,4',4″-(1,3,5-三嗪-2,4,6-三基)三苯甲酰胺( )和4,4',4″-(苯-1,3,5-三基)三苯甲酰胺( )的温度依赖性超分子共聚的显著发现。我们首先在两种单体的均聚反应中证明,单体化学结构中从中心三嗪到苯的细微变化显著影响所得均聚物在溶液中的性质。与 相比,由 形成的均聚物表现出更高的稳定性。更重要的是,通过光谱分析和理论模拟相结合,我们揭示了共聚的复杂过程: 在高温下聚集成均聚物,在缓慢冷却时 逐渐插入共聚物中,最终在10°C时得到具有近80%交替键的共聚物。在较低温度下, 和 中三嗪和苯核之间优先的异质相互作用可能导致了主要交替共聚物的形成。总体而言,这项工作揭示了超分子共聚过程的复杂性,其中存在一种中间异质相互作用(高于一种同质相互作用且低于另一种同质相互作用),并提出了一种阐明对温度变化响应的共聚物微观结构的通用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b69/8532160/6b6a5dcf5d6c/ja1c07690_0001.jpg

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