Faculty of Chemistry and Chemical Biology, TU Dortmund Univ., Otto-Hahn-Str. 6, 44227, Dortmund, Germany.
Institute for Organic Chemistry, Univ. Duisburg-Essen, Universitätsstr. 7, 45117, Essen, Germany.
Angew Chem Int Ed Engl. 2020 Dec 7;59(50):22489-22493. doi: 10.1002/anie.202010995. Epub 2020 Oct 13.
Most metallo-supramolecular assemblies of low nuclearity adopt simple topologies, with bridging ligands spanning neighboring metal centers in a direct fashion. Here we contribute a new structural motif to the family of host compounds with low metal count (two) that consists of a pair of doubly-interlocked, Figure-eight-shaped subunits, also termed "lemniscates". Each metal is chelated by two chiral bidentate ligands, composed of a peptidic macrocycle that resembles a natural product with two pyridyl-terminated arms. DFT calculation results suggest that dimerization of the mononuclear halves is driven by a combination of 1) Coulomb interaction with a central anion, 2) π-stacking between intertwined ligand arms and 3) dispersive interactions between the structure's compact inner core bedded into an outer shell composed of the cavitand-type macrocycles. The resulting cage-like architecture was characterized by NMR, MS and X-ray structure analyses. This new mechanically bonded system highlights the scope of structural variety accessible in metal-mediated self-assemblies composed of only a few constituents.
大多数低核金属超分子组装体采用简单的拓扑结构,桥连配体以直接的方式跨越相邻的金属中心。在这里,我们为低金属数(两个)的主体化合物家族贡献了一个新的结构基元,它由一对双互锁的、呈 8 字形的亚单位组成,也称为“泪滴形”。每个金属都被两个手性双齿配体螯合,由一个肽大环组成,大环类似于具有两个吡啶端臂的天然产物。DFT 计算结果表明,单核部分的二聚化是由以下因素共同驱动的:1)与中心阴离子的库仑相互作用,2)交织配体臂之间的π-堆积,以及 3)紧凑的内部核心与由空穴型大环组成的外壳之间的分散相互作用。所得的笼状结构通过 NMR、MS 和 X 射线结构分析进行了表征。这个新的机械键合系统突出了仅由几个组成部分组成的金属介导自组装中可获得的结构多样性的范围。