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Beyond Molecules: Mesoporous Supramolecular Frameworks Self-Assembled from Coordination Cages and Inorganic Anions

机译:超越分子:由配位笼和无机阴离子自组装的中孔超分子骨架

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摘要

Biological function arises by the assembly of individual biomolecular modules into large aggregations or highly complex architectures. A similar strategy is adopted in supramolecular chemistry to assemble complex and highly ordered structures with advanced functions from simple components. Here we report a series of diamond-like supramolecular frameworks featuring mesoporous cavities, which are assembled from metal-imidazolate coordination cages and various anions. Small components (metal ions, amines, aldehydes, and anions) are assembled into the hierarchical complex structures through multiple interactions including covalent bonds, dative bonds, and weak CHX (X=O, F, and ) hydrogen bonds. The mesoporous cavities are large enough to trap organic dye molecules, coordination cages, and vitaminB(12). The study is expected to inspire new types of crystalline supramolecular framework materials based on coordination motifs and inorganic ions.
机译:生物学功能是通过将单个生物分子模块组装成大型聚集体或高度复杂的体系结构而产生的。在超分子化学中采用了类似的策略,以从简单的组件组装具有高级功能的复杂且高度有序的结构。在这里,我们报道了一系列具有介孔腔的类金刚石超分子骨架,这些骨架是由金属-咪唑基配位笼和各种阴离子组装而成的。小成分(金属离子,胺,醛和阴离子)通过包括共价键,导数键和弱CHX(X = O,F和)氢键在内的多种相互作用组装成分层的复杂结构。中孔腔大到足以捕获有机染料分子,配位笼和维生素B(12)。该研究有望激发基于配位基序和无机离子的新型晶体超分子骨架材料。

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