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A Coordinative Solubilizer Method to Fabricate Soft Porous Materials from Insoluble Metal–Organic Polyhedra

机译:从不溶性金属-有机多面体制备柔软多孔材料的配位增溶剂方法

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摘要

Porous molecular cages have a characteristic processability arising from their solubility, which allows their incorporation into porous materials. Attaining solubility often requires covalently bound functional groups that are unnecessary for porosity and which ultimately occupy free volume in the materials, decreasing their surface areas. Here, a method is described that takes advantage of the coordination bonds in metal–organic polyhedra (MOPs) to render insoluble MOPs soluble by reversibly attaching an alkyl‐functionalized ligand. We then use the newly soluble MOPs as monomers for supramolecular polymerization reactions, obtaining permanently porous, amorphous polymers with the shape of colloids and gels, which display increased gas uptake in comparison with materials made with covalently functionalized MOPs.
机译:多孔分子笼由于其溶解性而具有特征性的可加工性,这使其可以掺入多孔材料中。达到溶解性通常需要共价键合的官能团,这些官能团对于孔隙率是不必要的,并且最终占据了材料的自由体积,从而减小了其表面积。在这里,描述了一种方法,该方法利用金属有机多面体(MOP)中的配位键通过可逆地连接烷基官能化的配体,使不溶性MOP可溶。然后,我们使用新溶解的MOP作为超分子聚合反应的单体,获得具有胶体和凝胶形状的永久多孔,无定形聚合物,与共价官能化MOP制成的材料相比,其显示出更高的气体吸收率。

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