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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Host-guest adaptability within oxothiomolybdenum wheels: structures, studies in solution and DFT calculations
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Host-guest adaptability within oxothiomolybdenum wheels: structures, studies in solution and DFT calculations

机译:硫代钼钼轮中主客体的适应性:结构,溶液研究和DFT计算

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The formation of host-guest cyclic architectures, built up through the self-condensation process of [Mo2O2S2](2+) oxothiocations around linear dicarboxylate ions such as adipate (Adip(2-)), suberate (Sub(2-)) and azelaate (Azel(2-)) anions is reported. The complexes [Mo(12)Adip](2-), [Mo(12)Sub](2-) and [Mo(14)Azel](2-) have been characterized in the solid state by X-ray diffraction and in solution by H-1 NMR in different solvents (D2O, DMF, DMSO and CD3CN). The host-guest dynamics appear to be dependent on the nature of the system and are mainly governed by mutual adaptability between the host and the guest. H-1 NMR DOSY experiments show systematic differences, either positive or negative between the experimental and calculated molecular weights which appear to be correlated with the charge of the anion. The relative stabilities of the twelve-membered rings containing the Adip(2-), Pim(2-) (pimelate) or Sub(2-) anions were determined experimentally and decrease according to the order [Mo(12)Adip](2-) > [Mo(12)Pim](2-) > [Mo(12)Sub](2-). The host-guest adaptability depends on the length of the carbon chain and gives rise to selective encapsulation processes. Finally, theoretical DFT investigations in the gas phase yielded conformations whose symmetry and geometrical parameters proved consistent with X-ray structures and 1H NMR spectra recorded in DMSO or DMF. Energy calculation highlights the high flexibility of the ring showing that only 3.1 kJ mol(-1) accompanies the conformational change from circular to elliptical. The host-guest bond energy ( DE) calculated for the Mo-12-based clusters is consistent with the experimental stability scale, major variations being due to some constraints undergone by the central alkyl chain.
机译:通过[Mo2O2S2](2+)氧代硫代阳离子在线性二羧酸根离子(如己二酸(Adip(2-)),辛二酸(Sub(2-))和报告了壬二酸酯(Azel(2-))阴离子。配合物[Mo(12)Adip](2-),[Mo(12)Sub](2-)和[Mo(14)Azel](2-)已通过X射线衍射表征为固态,并且在不同溶剂(D2O,DMF,DMSO和CD3CN)中通过H-1 NMR进行分析。来宾与访客之间的动态关系似乎取决于系统的性质,并且主要受主机与来宾之间相互适应的支配。 H-1 NMR DOSY实验表明,实验分子量和计算分子量之间存在系统差异,无论是正值还是负值,这似乎与阴离子的电荷相关。通过实验确定了包含Adip(2-),Pim(2-)(庚二酸酯)或Sub(2-)阴离子的十二元环的相对稳定性,并根据[Mo(12)Adip](2 -)> [Mo(12)Pim](2-)> [Mo(12)Sub](2-)。主客体的适应性取决于碳链的长度,并引起选择性封装过程。最后,在气相中进行理论DFT研究得出的构象,其对称性和几何参数证明与DMSO或DMF中记录的X射线结构和1H NMR光谱一致。能量计算突显了环的高柔韧性,表明只有3.1 kJ mol(-1)伴随着从圆形到椭圆形的构象变化。为基于Mo-12的团簇计算的主客体键能(DE)与实验稳定性量表一致,主要变化是由于中心烷基链受到某些限制。

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