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氢键大环介导的二聚作用实现正交超分子聚合

Hydrogen-bonded macrocycle-mediated dimerization for orthogonal supramolecular polymerization.

作者信息

Yu Wentao, Yang Zhiyao, Yu Chengkan, Li Xiaowei, Yuan Lihua

机构信息

College of Chemistry, Sichuan University, Chengdu 610064, China.

出版信息

Beilstein J Org Chem. 2025 Jan 17;21:179-188. doi: 10.3762/bjoc.21.10. eCollection 2025.

Abstract

Orthogonal self-assembly represents a useful methodology to construct supramolecular polymers with AA- and AB-type monomers, as commonly used for covalently linked polymers. So far, the design of such monomers has relied heavily on three-dimensional macrocycles, and the use of two-dimensional shape-persistent macrocycles for this purpose remains rather rare. Here, we demonstrate a dimerization motif based on a hydrogen-bonded macrocycle that can be effectively applied to form orthogonal supramolecular polymers. The macrocycle-mediated connectivity was confirmed by single-crystal X-ray diffraction, which revealed a unique 2:2 binding motif between host and guest, bridged by two cationic pyridinium end groups through π-stacking interactions and other cooperative intermolecular forces. Zinc ion-induced coordination with the macrocycle and a terpyridinium derivative enabled orthogonal polymerization, as revealed by H NMR, DLS, and TEM techniques. In addition, viscosity measurements showed a transition from oligomers to polymers at the critical polymerization concentration of 17 μM. These polymers were highly concentration-dependent. Establishing this new dimerization motif with shape-persistent H-bonded macrocycles widens the scope of noncovalent building blocks for supramolecular polymers and augurs well for the future development of functional materials.

摘要

正交自组装是一种构建具有AA型和AB型单体的超分子聚合物的有用方法,这与共价连接聚合物常用的方法类似。到目前为止,此类单体的设计严重依赖于三维大环,而二维形状持久大环在此方面的应用仍然很少。在此,我们展示了一种基于氢键大环的二聚化基序,其可有效地用于形成正交超分子聚合物。大环介导的连接性通过单晶X射线衍射得到证实,该衍射揭示了主体与客体之间独特的2:2结合基序,由两个阳离子吡啶鎓端基通过π-堆积相互作用和其他协同分子间作用力桥连。如通过1H NMR、动态光散射(DLS)和透射电子显微镜(TEM)技术所揭示的,锌离子诱导的与大环和三联吡啶鎓衍生物的配位实现了正交聚合。此外,粘度测量表明在17 μM的临界聚合浓度下从低聚物向聚合物的转变。这些聚合物高度依赖于浓度。利用形状持久的氢键大环建立这种新的二聚化基序拓宽了超分子聚合物非共价构建单元的范围,并为功能材料的未来发展预示了良好前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/376d/11744735/0ea33a299491/Beilstein_J_Org_Chem-21-179-g010.jpg

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