CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, National Center for Nanoscience and Technology (NCNST), No.11, ZhongGuanCun BeiYiTiao, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Angew Chem Int Ed Engl. 2022 Sep 19;61(38):e202206332. doi: 10.1002/anie.202206332. Epub 2022 Aug 8.
Among the enticing issues of chiral origins are: how chirality is born from the initial achiral units and the mechanisms for the transfer of chiral information. In this work, by combining a physical vortex and chiral seeds, a general process is revealed to generate chiral supramolecular polymers from achiral C -symmetric molecules. The symmetry-broken assemblies from the achiral molecules could work as chiral seeds to initiate the polymerization of either homologous or heterologous achiral monomers. Concomitantly, the fragmentation of the polymer caused by the vortex during the nucleation-elongation stages is shown to enlarge the domains of the chiral nuclei and then guide the polymer to grow into the predominant helicity with a high reactivity ratio. Moreover, the chiral structural information can be stored in different forms of assemblies. These new polymerization modes will provide guidance for the preparation of chiral materials.
手性如何从最初的非手性单元产生,以及手性信息传递的机制。在这项工作中,通过结合物理涡旋和手性种子,揭示了一种从非手性 C 对称分子生成手性超分子聚合物的通用方法。来自非手性分子的对称破缺组装可以作为手性种子,引发同源或异源非手性单体的聚合。同时,在成核-延伸阶段,涡旋引起的聚合物的断裂被证明可以增大手性核的畴,并引导聚合物以高反应性比生长为主要螺旋构象。此外,手性结构信息可以以不同形式的组装形式存储。这些新的聚合模式将为手性材料的制备提供指导。