Department of Chemistry, Texas A&M University, College Station, Texas 77842-3012, USA.
Nat Chem. 2010 Oct;2(10):893-8. doi: 10.1038/nchem.803. Epub 2010 Aug 22.
Metal-organic polyhedra-discrete molecular architectures constructed through the coordination of metal ions and organic linkers-have recently attracted considerable attention due to their intriguing structures, their potential for a variety of applications and their relevance to biological self-assembly. Several synthetic routes have been investigated to prepare these complexes. However, to date, these preparative methods have typically been based on the direct assembly of metal ions and organic linkers. Although these routes are convenient, it remains difficult to find suitable reaction conditions or to control the outcome of the assembly process. Here, we demonstrate a synthetic strategy based on the substitution of bridging ligands in soluble metal-organic polyhedra. The introduction of linkers with different properties from those of the initial metal-organic polyhedra can thus lead to new metal-organic polyhedra with distinct properties (including size and shape). Furthermore, partial substitution can also occur and form mixed-ligand species that may be difficult to access by means of other approaches.
金属-有机多面体-通过金属离子和有机配体的配位构建的离散分子体系结构,由于其有趣的结构、多种应用的潜力以及与生物自组装的相关性,最近引起了相当大的关注。已经研究了几种合成途径来制备这些配合物。然而,迄今为止,这些制备方法通常基于金属离子和有机配体的直接组装。虽然这些路线很方便,但仍然很难找到合适的反应条件或控制组装过程的结果。在这里,我们展示了一种基于可溶性金属-有机多面体中桥联配体取代的合成策略。因此,引入与初始金属-有机多面体的性质不同的配体可以导致具有独特性质(包括尺寸和形状)的新的金属-有机多面体。此外,部分取代也可能发生,并形成混合配体物种,这可能很难通过其他方法获得。