Department of Chemistry, Hallym University, Chuncheon, Gangwon-do, 24252, Republic of Korea.
Chemistry. 2019 Feb 18;25(10):2472-2476. doi: 10.1002/chem.201805686. Epub 2019 Jan 21.
Effective incorporation of multiple types of ligands in a given coordination structure provides structural complexity and functional diversity to the resultant coordination-driven assembly. One of the most widely used synthetic approaches is the utilization of the molecular symmetry principle to combine multiple ligands and specific metallic centers in a preferred manner. The variation of metal ions can be helpful to understand the importance of symmetry for the generation of structurally hierarchical supramolecular platforms. We describe the synthesis and characterization of isostructural supramolecular helicates, [M (PDA) (AIP) (DMF) (H O) ] (M=Ni (1), Co (2), and Mn (3); PDA=2,6-pyridinedicarboxylate; AIP=5-aminoisophthalate; x=0 for 1, and x=4 for 2 and 3). The effect of metal variation on the formation of supramolecular helicates and their solid-state crystal packing are discussed. Despite the disparity in the ionic radii and distinct coordination-geometry preferences of Co , Ni , and Mn , all metal centers engaged in the assembly with the heteroleptic ligands in the same manner to form isostructural supramolecular helicates.
在给定的配位结构中有效结合多种配体为所得的配位驱动组装提供了结构复杂性和功能多样性。最广泛使用的合成方法之一是利用分子对称性原理以优选的方式结合多种配体和特定的金属中心。金属离子的变化有助于理解对称性对于生成结构层次的超分子平台的重要性。我们描述了等结构超分子螺旋体[M(PDA)(AIP)(DMF)(H_2O)](M=Ni(1)、Co(2)和 Mn(3);PDA=2,6-吡啶二甲酸;AIP=5-氨基异酞酸;x=0 对应于 1,x=4 对应于 2 和 3)的合成和表征。讨论了金属变化对超分子螺旋体的形成及其固态晶体堆积的影响。尽管 Co、Ni 和 Mn 的离子半径和明显的配位几何形状偏好存在差异,但所有金属中心都以相同的方式与杂配体结合形成等结构超分子螺旋体。