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预测水溶液中铀酰离子水交换反应的能量和溶剂化自由能。

Predicting the energy of the water exchange reaction and free energy of solvation for the uranyl ion in aqueous solution.

作者信息

Gutowski Keith E, Dixon David A

机构信息

Department of Chemistry and Center for Green Manufacturing, Shelby Hall, Box 870336, The University of Alabama, Tuscaloosa, Alabama 35487, USA.

出版信息

J Phys Chem A. 2006 Jul 20;110(28):8840-56. doi: 10.1021/jp061851h.

Abstract

The structures and vibrational frequencies of UO2(H2O)4(2+) and UO2(H2O)5(2+) have been calculated using density functional theory and are in reasonable agreement with experiment. The energies of various reactions were calculated at the density functional theory (DFT) and MP2 levels; the latter provides the best results. Self-consistent reaction field calculations in the PCM and SCIPCM approximations predicted the free energy of the water exchange reaction, UO2(H2O)4(2+) + H2O <--> UO2(H2O)5(2+). The calculated free energies of reaction are very sensitive to the choice of radii (O and H) and isodensity values in the PCM and SCIPCM models, respectively. Results consistent with the experimental HEXS value of -1.19 +/- 0.42 kcal/mol (within 1-3 kcal/mol) are obtained with small cavities. The structures and vibrational frequencies of the clusters with second solvation shell waters: UO2(H2O)4(H2O)8(2+), UO2(H2O)4(H2O)10(2+), UO2(H2O)4(H2O)11(2+), UO2(H2O)5(H2O)7(2+), and UO2(H2O)5(H2O)10(2+), were calculated and are in better agreement with experiment as compared to reactions involving only UO2(H2O)4(2+) and UO2(H2O)5(2+). The MP2 reaction energies for water exchange gave gas-phase results that agreed with experiment in the range -5.5 to +3.3 kcal/mol. The results were improved by inclusion of a standard PCM model with differences of -1.2 to +2.7 kcal/mol. Rearrangement reactions based on an intramolecular isomerization leading to a redistribution of water in the two shells provide good values in comparison to experiment with values of Delta G(exchange) from -2.2 to -0.5 kcal/mol so the inclusion of a second hydration sphere accounts for most solvation effects. Calculation of the free energy of solvation of the uranyl cation yielded an upper bound to the solvation energy of -410 +/- 5 kcal/mol, consistent with the best experimental value of -421 +/- 15 kcal/mol.

摘要

采用密度泛函理论计算了UO₂(H₂O)₄²⁺和UO₂(H₂O)₅²⁺的结构及振动频率,计算结果与实验结果基本相符。在密度泛函理论(DFT)和MP2水平上计算了各种反应的能量;后者给出了最佳结果。在PCM和SCIPCM近似下的自洽反应场计算预测了水交换反应UO₂(H₂O)₄²⁺ + H₂O <--> UO₂(H₂O)₅²⁺的自由能。计算得到的反应自由能对PCM和SCIPCM模型中半径(氧和氢)及等密度值的选择非常敏感。使用小空穴可得到与实验HEXS值-1.19±0.42 kcal/mol一致的结果(误差在1 - 3 kcal/mol范围内)。计算了具有第二溶剂化层水的团簇UO₂(H₂O)₄(H₂O)₈²⁺、UO₂(H₂O)₄(H₂O)₁₀²⁺、UO₂(H₂O)₄(H₂O)₁₁²⁺、UO₂(H₂O)₅(H₂O)₇²⁺和UO₂(H₂O)₅(H₂O)₁₀²⁺的结构及振动频率,与仅涉及UO₂(H₂O)₄²⁺和UO₂(H₂O)₅²⁺的反应相比,计算结果与实验结果的吻合度更高。水交换的MP2反应能量给出的气相结果在-5.5至+3.3 kcal/mol范围内与实验结果相符。通过包含标准PCM模型,结果得到了改善,差值在-1.2至+2.7 kcal/mol范围内。基于分子内异构化导致两层水中水重新分布的重排反应与实验相比给出了较好的值,ΔG(交换)值在-2.2至-0.5 kcal/mol范围内,因此包含第二水合层可解释大部分溶剂化效应。计算得到的铀酰阳离子溶剂化自由能给出了溶剂化能的上限为-410±5 kcal/mol,与最佳实验值-421±15 kcal/mol一致。

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