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首页> 外文期刊>Angewandte Chemie >'Host in Host' Supramolecular Core-Shell Type Systems Based on Giant Ring-Shaped Polyoxometalates
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'Host in Host' Supramolecular Core-Shell Type Systems Based on Giant Ring-Shaped Polyoxometalates

机译:“主持主机”超分子核心壳型系统,基于巨环多氧化素

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Herein, we show how the chaotropic effect arising from reduced molybdate ions in acidified aqueous solution is able to amplify drastically weak supramolecular interactions. Time-resolved Small Angle X-ray Scattering (SAXS) analysis suggests that molybdenum-blue oligomeric species form huge aggregates in the presence of gamma-cyclodextrin (gamma-CD) which results in the fast formation of nanoscopic {Mo-154}-based host-guest species, while X-ray diffraction analysis reveals that the ending-point of the scenario results in an unprecedented three-component well-ordered core-shell-like motif. A similar arrangement was found by using preformed hexarhenium chalcogenide-type cluster [Re6Te8(CN)(6)](4-) as exogenous guest. This seminal work brings better understanding of the self-assembly processes in general and gives new opportunities for practical applications in the design of complex multicomponent materials via the simplicity of the non-covalent chemistry.
机译:在此,我们展示了酸化水溶液中还原的钼酸盐离子所产生的潮向效应如何能够显著放大微弱的超分子相互作用。时间分辨小角X射线散射(SAXS)分析表明,钼蓝低聚物在γ-环糊精(γ-CD)存在下形成巨大聚集体,从而快速形成基于{Mo-154}的纳米级主客体物种,而X射线衍射分析显示,该场景的终点导致了前所未有的三组分有序核壳状图案。通过使用预成型的六铼硫系簇[Re6Te8(CN)(6)](4-)作为外源客体,发现了类似的排列。这项开创性的工作使人们对自组装过程有了更好的理解,并通过非共价化学的简单性为复杂多组分材料的设计提供了新的实际应用机会。

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