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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Structures of Plutonium(IV) and Uranium(VI) with N,N-Dialkyl Amides from Crystallography, X-ray Absorption Spectra, and Theoretical Calculations
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Structures of Plutonium(IV) and Uranium(VI) with N,N-Dialkyl Amides from Crystallography, X-ray Absorption Spectra, and Theoretical Calculations

机译:晶体学,X射线吸收光谱和理论计算的N,N-二烷基酰胺Am(IV)和铀(VI)结构

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摘要

The structures of plutonium(IV) and uranium(VI) ions with a series of N,N-dialkyl amides ligands with linear and branched alkyl chains were elucidated from single-crystal X-ray diffraction (XRD), extended X-ray absorption fine structure (EXAFS), and theoretical calculations. In the field of nuclear fuel reprocessing, N,N-dialkyl amides are alternative organic ligands to achieve the separation of uranium(VI) and plutonium(IV) from highly concentrated nitric acid solution. EXAFS analysis combined with XRD shows that the coordination structure of U(VI) is identical in the solution and in the solid state and is independent of the alkyl chain: two amide ligands and four bidentate nitrate ions coordinate the uranyl ion. With linear alkyl chain amides, Pu(IV) also adopt identical structures in the solid state and in solution with two amides and four bidentate nitrate ions. With branched alkyl chain amides, the coordination structure of Pu(IV) was more difficult to establish unambiguously from EXAFS. Density functional theory (DFT) calculations were consequently performed on a series of structures with different coordination modes. Structural parameters and Debye-Waller factors derived from the DFT calculations were used to compute EXAFS spectra without using fitting parameters. By using this methodology, it was possible to show that the branched alkyl chain amides form partly outer-sphere complexes with protonated ligands hydrogen bonded to nitrate ions.
机译:通过单晶X射线衍射(XRD)阐明了具有一系列具有直链和支链烷基链的N,N-二烷基酰胺配体的p(IV)和铀(VI)离子的结构,扩展了X射线吸收精度结构(EXAFS)和理论计算。在核燃料后处理领域,N,N-二烷基酰胺是替代性有机配体,可实现从高浓度硝酸溶液中分离铀(VI)和p(IV)。与XRD结合的EXAFS分析表明,U(VI)的配位结构在溶液和固态下均相同,并且与烷基链无关:两个酰胺配体和四个二齿硝酸根离子与铀酰离子配位。对于线性烷基链酰胺,Pu(IV)在固态和溶液中还具有相同的结构,并带有两个酰胺和四个二齿硝酸根离子。对于支链烷基酰胺,从EXAFS很难明确地确定Pu(IV)的配位结构。因此,对一系列具有不同配位模式的结构进行了密度泛函理论(DFT)计算。由DFT计算得出的结构参数和Debye-Waller因子用于计算EXAFS光谱,而无需使用拟合参数。通过使用该方法,可能表明支链烷基链酰胺与氢键合到硝酸根离子上的质子化配体形成部分外球络合物。

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