Bai Qixia, Guan Yu-Ming, Wu Tun, Liu Ying, Zhai Zirui, Long Qingwu, Jiang Zhiyuan, Su Peiyang, Xie Ting-Zheng, Wang Pingshan, Zhang Zhe
Institute of Environmental Research at Greater Bay Area, Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou, 510006, China.
College of Light Chemical Industry and Materials Engineering, Shunde Polytechnic, Foshan, 528333, China.
Angew Chem Int Ed Engl. 2023 Sep 25;62(39):e202309027. doi: 10.1002/anie.202309027. Epub 2023 Aug 17.
The precise control over hierarchical self-assembly of superstructures relying on the elaboration of multiple noncovalent interactions between basic building blocks is both elusive and highly desirable. We herein report a terpyridine-based metallo-cage T with a tetrahedral motif and utilized it as an efficient building block for the controlled hierarchical self-assembly of superstructures in response to different halide ions. Initially, the hierarchical superstructure of metallo-cage T adopted a hexagonal close-packed structure. By adding Cl /Br or I , drastically different hierarchical superstructures with highly-tight hexagonal packing or graphite-like packing arrangements, respectively, have been achieved. These unusual halide-ion-triggered hierarchical structural changes resulted in quite distinct intermolecular channels, which provided new insights into the mechanism of three-dimensional supramolecular aggregation and crystal growth based on macromolecular construction. In addition, the chiral induction of the metallo-cage T can be realized with the addition of chiral anions, which stereoselectively generated either PPPP- or MMMM-type enantiomers.
通过精细调控基本结构单元之间多种非共价相互作用来精确控制超结构的分级自组装,这既难以实现又极具吸引力。我们在此报告了一种具有四面体结构的基于三联吡啶的金属笼T,并将其用作响应不同卤离子的超结构可控分级自组装的有效结构单元。最初,金属笼T的分级超结构采用六方密堆积结构。通过添加Cl⁻/Br⁻或I⁻,分别实现了具有高度紧密六方堆积或类石墨堆积排列的截然不同的分级超结构。这些由卤离子引发的不寻常的分级结构变化导致了截然不同的分子间通道,这为基于大分子构建的三维超分子聚集和晶体生长机制提供了新的见解。此外,通过添加手性阴离子可以实现金属笼T的手性诱导,其立体选择性地产生PPPP型或MMMM型对映体。