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二甲基亚砜中铀(VI)-醋酸盐配合物的能量和结构。

Energetics and structure of uranium(VI)-acetate complexes in dimethyl sulfoxide.

机构信息

Dipartimento di Scienze Chimiche, Università di Padova, Via Marzolo 1, 35131 Padova, Italy.

出版信息

Inorg Chem. 2012 Aug 20;51(16):9045-55. doi: 10.1021/ic301190d. Epub 2012 Aug 7.

Abstract

The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) was studied at 298 K in an ionic medium of 0.1 mol dm(-3) tetrabutyl ammonium perchlorate. The results show that the uranyl ion forms three strong successive mononuclear complexes with acetate. The complexes, both enthalpically and entropically stabilized, are significantly more stable in DMSO than in water. This feature can be ascribed to the weak solvation of acetate in DMSO. The thermodynamic parameters for the formation of the uranium(VI) complexes with acetate in DMSO are compared with those with ethylenediamine in the same solvent. The difference between the two ligand systems reveals that, for the complexation reactions involving charge neutralization, the reorganization of the solvent gives a very important contribution to the overall complexation energetics. The coordination mode of acetate in the uranyl complexes and the changes of the solvation sphere of UO(2)(2+) upon complexation were investigated by FT-IR spectroscopy in DMSO and in acetonitrile/DMSO mixtures. In addition, DFT calculations were performed to provide an accurate description of the complexation at the molecular level. The experimental and calculated results suggest that acetate is solely bidentate to UO(2)(2+) in the 1:1 and 1:3 complexes but mono- and bidentate in the 1:2 complexes. The DFT calculations also indicate that the medium effects must always be taken into account in order to gain accurate information on the complex formation in solution. In fact, the relative stability of the reaction products changes markedly when the DFT calculations are carried out in vacuum or in DMSO solution.

摘要

在 298 K 下,在 0.1 mol dm(-3)四丁基高氯酸铵的离子介质中研究了铀(VI)和乙酸盐在二甲亚砜(DMSO)中的络合热力学。结果表明,UO22+ 与乙酸盐形成三个强连续的单核络合物。这些络合物在焓和熵上都得到稳定,在 DMSO 中的稳定性明显高于在水中。这一特性可以归因于乙酸盐在 DMSO 中的弱溶剂化作用。与在相同溶剂中与乙二胺形成的铀(VI)配合物的热力学参数进行了比较。这两个配体系统之间的差异表明,对于涉及电荷中和的络合反应,溶剂的重组对整体络合能量学有非常重要的贡献。通过 FT-IR 光谱在 DMSO 和乙腈/DMSO 混合物中研究了乙酸盐在铀酰配合物中的配位模式以及 UO22+ 在络合过程中溶剂化壳的变化。此外,进行了 DFT 计算以提供在分子水平上对络合的准确描述。实验和计算结果表明,在 1:1 和 1:3 配合物中,乙酸盐仅与 UO22+ 呈双齿配位,但在 1:2 配合物中呈单齿和双齿配位。DFT 计算还表明,为了获得溶液中络合形成的准确信息,必须始终考虑介质效应。事实上,当在真空中或在 DMSO 溶液中进行 DFT 计算时,反应产物的相对稳定性会发生明显变化。

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