August David P, Jaramillo-Garcia Javier, Leigh David A, Valero Alberto, Vitorica-Yrezabal Iñigo J
Department of Chemistry, University of Manchester, Manchester M13 9PL, United Kingdom.
J Am Chem Soc. 2021 Jan 20;143(2):1154-1161. doi: 10.1021/jacs.0c12038. Epub 2021 Jan 5.
Although circular helicates can be assembled with a range of labile transition-metal centers, solely "chiral-at-metal" examples (i.e., systems without chiral ligands) and heterometallic (i.e., mixed metal systems, racemic or chiral) circular helicates both remain unexplored. Here, we report on the enantioselective synthesis of a heterometallic (IrZn) hexameric circular helicate and its elaboration into the corresponding triply interlocked Star of David [2]catenane. The relative inertness of Ir(III) enables enantiospecific synthesis of the hexameric circular helicate using chiral-at-metal building blocks. The resulting Star of David [2]catenane, which is a chiral 6-2-1 link, is formed as a single topological enantiomer. The X-ray crystal structure of the (IrZn)-catenane shows each of the two 95-atom-long macrocycles entwined around the six metal octahedral metal ions and each other, forming a triply interlocked circular double helix. Two PF anions reside above and below the central cavity. The Star of David [2]catenane, both with and without coordinated Zn(II) ions, retains the photophysical properties characteristic of cyclometalated Ir(III) complexes. The synthetic strategy opens up new research directions and opportunities for the assembly of other chiral knots, links, and heterometallic circular helicates.
尽管可以用一系列不稳定的过渡金属中心组装环状螺旋配合物,但仅“金属手性”的例子(即没有手性配体的体系)和异金属(即混合金属体系,外消旋或手性)环状螺旋配合物仍未被探索。在此,我们报道了一种异金属(IrZn)六聚体环状螺旋配合物的对映选择性合成及其转化为相应的三重互锁的大卫之星[2]索烃。Ir(III)的相对惰性使得能够使用金属手性构建块对映特异性合成六聚体环状螺旋配合物。所得的大卫之星[2]索烃是一种手性6-2-1连接,以单一拓扑对映体形式形成。(IrZn)-索烃的X射线晶体结构表明,两个95个原子长的大环中的每一个都缠绕在六个金属八面体金属离子周围并相互缠绕,形成一个三重互锁的环状双螺旋。两个PF阴离子位于中心腔的上方和下方。有和没有配位Zn(II)离子的大卫之星[2]索烃都保留了环金属化Ir(III)配合物的光物理性质。该合成策略为组装其他手性结、连接和异金属环状螺旋配合物开辟了新的研究方向和机会。