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多组分种子超分子聚合中的立体选择性一级和二级成核事件。

Stereoselective Primary and Secondary Nucleation Events in Multicomponent Seeded Supramolecular Polymerization.

机构信息

New Chemistry Unit and School of Advanced Materials (SAMat), Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Jakkur, Bangalore 560064, India.

出版信息

J Am Chem Soc. 2021 Aug 4;143(30):11777-11787. doi: 10.1021/jacs.1c05642. Epub 2021 Jul 26.

Abstract

Bioinspired, kinetically controlled seeded growth has been recently shown to provide length, dispersity, and sequence control on the primary structure of dynamic supramolecular polymers. However, command over the molecular organization at all hierarchical levels for the modulation of higher order structures of supramolecular polymers remains a formidable task. In this context, a surface-catalyzed secondary nucleation process, which plays an important role in the autocatalytic generation of amyloid fibrils and also during the chiral crystallization of small monomers, offers exciting possibilities for topology control in synthetic macromolecular systems by introducing secondary growth pathways compared to the usual primary nucleation-elongation process. However, mechanistic insights into the molecular determinants and driving forces for the secondary nucleation event in synthetic systems are not yet realized. Herein, we attempt to fill this dearth by showing an unprecedented molecular chirality control on the primary and secondary nucleation events in seed-induced supramolecular polymerization. Comprehensive kinetic experiments using spectroscopic probing of the temporal changes of the monomer organization during the growth process provide a unique study to characterize the primary and secondary nucleation events in a supramolecular polymerization process. Kinetic analyses along with various microscopic studies further reveal the remarkable effect of stereoselective nucleation and seeding events on the (micro)structural aspects of the resulting multicomponent supramolecular polymers.

摘要

受生物启发的、动力学控制的种子生长最近被证明可以在动态超分子聚合物的一级结构上提供长度、分散性和序列控制。然而,对于调节超分子聚合物的更高阶结构,对所有层次的分子组织的控制仍然是一项艰巨的任务。在这种情况下,表面催化的二次成核过程在淀粉样纤维的自动催化生成中以及在小分子的手性结晶过程中都起着重要作用,通过引入二次生长途径,为合成大分子系统中的拓扑控制提供了令人兴奋的可能性,与通常的初级成核-延伸过程相比。然而,对于合成体系中二次成核事件的分子决定因素和驱动力的机理理解还没有实现。在此,我们试图通过展示在种子诱导的超分子聚合中对一级和二级成核事件的前所未有的分子手性控制来填补这一空白。使用光谱法对生长过程中单体组织的时间变化进行的综合动力学实验提供了对超分子聚合过程中一级和二级成核事件的独特研究。动力学分析以及各种微观研究进一步揭示了立体选择性成核和种子事件对所得多组分超分子聚合物的(微观)结构方面的显著影响。

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