Department of Organic and Polymer Chemistry; Hunan Key Laboratory of Micro & Nano Materials Interface Science, College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083, China.
Institute of Environmental Research at Greater Bay Area; Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education; Guangzhou Key Laboratory for Clean Energy and Materials, Guangzhou University, Guangzhou 510006, China.
J Am Chem Soc. 2020 Apr 22;142(16):7690-7698. doi: 10.1021/jacs.0c00754. Epub 2020 Apr 13.
By a precise metallo-ligand design, the advanced coordination-driven self-assembly could succeed in the preparation of giant molecular weight of the metallo-architectures. However, the synthesis of a single discrete high-molecular-weight (>100 K Da) structure has not been demonstrated due to the insurmountable synthetic challenge. Herein, we present a two-dimensional wheel structure () and a gigantic three-dimensional dodecagonal prism-like architecture (), which were generated by multicomponent self-assembly of two similar metallo-organic ligands and a core ligand with metal ions, respectively. The giant 2D-suprastructure with six hexagonal metallacycles that fused to the central spoke wheel was first achieved in nearly quantitative yield, and then, directed by introducing a meta-substituted coordination site into the key ligand, the supercharged (36 Ru and 48 Cd ions) double-decker prismatic structure with two wheel structure s serve as the surfaces and 12
通过精确的金属配体设计,先进的配位驱动自组装可以成功制备出具有巨大分子量的金属结构。然而,由于合成上的巨大挑战,尚未成功合成单一离散的高分子量(>100 kDa)结构。在此,我们展示了一种二维轮状结构()和一种巨大的三维十二角柱状类似物结构(),它们分别是由两种类似的金属有机配体和一个带有金属离子的核心配体的多组分自组装生成的。巨型二维超结构带有六个融合到中央轮辐的六元金属环,首次以近乎定量的产率实现,然后,通过在关键配体中引入一个间位取代的配位位点,得到了超荷电(36 Ru 和 48 Cd 离子)双层棱柱结构,其中两个轮状结构作为表面,12