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Coordination chemistry under confined conditions: a simplified illustrative view

机译:受限条件下的配位化学:简化的示意图

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摘要

Spherical-shaped polyoxomolybdate structures can be synthesized/designed so that they behave as an artificial cellano-chromatograph (AC/NC) towards a wide range of (counter-)cations,e.g.,ammonium,sodium,rubidium,caesium,calcium,cadmium,nickel,cerium and praseodymium.After formal identification of eight related basic molecular processes,their interplay is categorized tentatively with reference to three parameters: the structure of the respective molecular holes/pores exposed to the solution,the size/ionic radii of the (counter-)cations of the AC/NC,and the lability of the cations' water hydration shell.It is proposed that there is the option to use the AC/NCs to study,e.g.,the complexation behaviour of cations under confined conditions with the possibility to mimic cation transport through biological ion channels,but also to get general information about transport processes through molecular pores.The intrinsic properties of the AC/NCs,which can be even synthesized on a (kilo)gram scale,are also thought to open a new era in the study of water structures that may be formed at the nanometre scale in the presence or absence of electrolytes.
机译:可以合成/设计球形聚氧钼酸盐结构,以使其对各种(反)阳离子(如铵,钠,rub,铯,钙,在正式确定了八个相关的基本分子过程后,初步将它们的相互作用归因于三个参数:暴露于溶液中的各个分子孔/孔的结构,分子的尺寸/离子半径AC / NC的(反)阳离子以及阳离子的水合壳的不稳定性。建议使用AC / NC进行研究,例如在受限条件下阳离子的络合行为模拟通过生物离子通道的阳离子迁移的可能性,但也可以获得有关通过分子孔的迁移过程的一般信息。AC / NC的内在特性,甚至可以在(公斤)sca上合成也有人认为,在存在或不存在电解质的情况下,可能在纳米尺度上形成的水结构的研究开辟了一个新时代。

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