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首页> 外文期刊>Inorganica Chimica Acta >Ternary uranyl hydroxo acetate complexes: A computational study of structure, energetics, and stability constants
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Ternary uranyl hydroxo acetate complexes: A computational study of structure, energetics, and stability constants

机译:三元铀氧乙酸羟基酯配合物:结构,能量学和稳定性常数的计算研究

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摘要

We studied computationally uranyl monohydroxo monoacetate complexes in aqueous solution using a scalar relativistic all-electron density functional method. Such ternary uranyl complexes may serve as models of ternary uranyl humate complexes which are important for the speciation of uranyl in the environment. As for simple uranyl monocarboxylate complexes, we calculated bidentate coordination to be slightly preferred due to entropy and solvation effects. Compared to uranyl acetate, uranyl hydroxo acetate exhibits an elongated uranyl bond and a short U–OH bond of 214 pm. The latter may provide a signature for direct identification of such ternary complexes by EXAFS. As expected from the lower charge of uranyl monohydroxide, complexation by acetate is less exoenergetic than acetate complexation of uranyl. In contrast, experimental complexation constants of uranyl humate and uranyl hydroxo humate are quite similar. Thus, one may question the interpretation of experimental results that assign simple ternary complexes as result of uranyl humate complexation at neutral pH.
机译:我们使用标量相对论全电子密度泛函方法对水溶液中的铀酰单羟基单乙酸酯络合物进行了计算研究。这样的三聚铀酰复合物可以用作三聚铀酰腐植酸酯复合物的模型,其对于环境中的双氧铀形成是重要的。对于简单的铀酰单羧酸盐配合物,由于熵和溶剂化作用,我们计算出双齿配位略好。与乙酸铀酰相比,乙酸铀酰羟基酯具有较长的铀酰键和214 pm的短U-OH键。后者可以提供用于通过EXAFS直接识别此类三元复合物的签名。如从较低电荷的铀酰一氢氧化物所预期的那样,与铀酰的乙酸酯络合相比,乙酸酯的络合能量消耗少。相反,腐植酸铀酰和腐殖酸铀酰的实验络合常数非常相似。因此,人们可能会对实验结果的解释提出质疑,这些结果将简单的三元复合物归为中性pH下的铀酰腐植酸络合物。

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