School of Chemical Science and Engineering, Advanced Research Institute, Tongji University, Shanghai 200092, People's Republic of China.
State Key Laboratory of Fine Chemicals, Ningbo Institute of Dalian University of Technology, No. 26 Yucai Road, Ningbo 315016, People's Republic of China.
ACS Nano. 2023 Feb 14;17(3):2159-2169. doi: 10.1021/acsnano.2c08315. Epub 2023 Jan 17.
The study of dynamic supramolecular chirality inversion (SMCI) not only helps to deepen the understanding of chiral transfer and amplification in both living organizations and artificially chemical self-assembly systems but also is useful for the development of smart chiral nanomaterials. However, it is still challenging to achieve the dynamic SMCI of the self-aggregation of metal-organic supramolecular polymers with great potential in asymmetric synthesis, chiroptical switches, and circular polarized luminescence. Here, we successfully developed a hierarchical coassembly system based on the PAzPCC and various metal ions with effective chirality transfer and temporal-controlled SMCI. Due to the dynamic self-assembly and hierarchical chirality transfer of the Ag/PAzPCC complex driven by metallophilic interaction and coordination, morphological transition with nanoribbons, helical nanoribbons, and chiral nanotubules was successively obtained. Interestingly, the SMCI of chiral nanoaggregates was precisely regulated by solvents and metal ions in the Cu/PAzPCC and Mn/PAzPCC system. Besides, temporal-controlled dynamic SMCI switching from helix to bundled helix was clearly revealed in the aggregation of Cu/PAzPCC, Mn/PAzPCC, and Bi/PAzPCC systems. This work provides a metallophilic interaction-mediated helical assembly pathway to dynamically modulate the chirality of metal-organic complex-based assemblies and deepen the understanding of the hierarchically dynamic self-assembly process, which would be of great potential in metal ion-mediated supramolecular asymmetric catalysis and bioinspired chiral sensing.
动态超分子手性反转(SMCI)的研究不仅有助于加深对生命组织和人工化学自组装体系中手性传递和放大的理解,而且对智能手性纳米材料的发展也很有用。然而,实现具有不对称合成、手性光开关和圆偏振发光巨大潜力的金属有机超分子聚合物自组装的动态 SMCI 仍然具有挑战性。在这里,我们成功地开发了一种基于 PAzPCC 和各种金属离子的分级共组装体系,具有有效的手性传递和时间控制的 SMCI。由于银/PAzPCC 配合物的动态自组装和由金属亲合相互作用和配位驱动的分级手性传递,成功地获得了形态转变为纳米带、螺旋纳米带和手性纳米管。有趣的是,在 Cu/PAzPCC 和 Mn/PAzPCC 体系中,溶剂和金属离子精确调节了手性纳米聚集体的 SMCI。此外,在 Cu/PAzPCC、Mn/PAzPCC 和 Bi/PAzPCC 体系的聚集中,清楚地揭示了从螺旋到手性螺旋束的时间控制动态 SMCI 转换。这项工作提供了一种由金属亲合相互作用介导的螺旋组装途径,用于动态调节基于金属有机配合物组装体的手性,并加深对手性动态自组装过程的理解,在手性金属离子介导的超分子不对称催化和仿生手性传感中具有很大的潜力。