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Investigation of the water exchange mechanism of the Plutonyl(VI) and Uranyl(VI) ions with quantum chemical methods

机译:量子化学方法研究P基(VI)和铀基(VI)离子的水交换机理

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The water exchange reactions of [PuO2(OH2)(5)](2+) and [UO2(OH2)(5)](2+) were investigated with density functional theory (DFT) and wave function theory (WFT). Geometries and vibrational frequencies were calculated with DFT and CPCM hydration. The electronic energies were evaluated with general multiconfiguration quasi-degenerate second-order perturbation theory (GMC-QDPT2). Spin-orbit (SO) effects, computed with SO configuration interaction (SO-CI), are negligible. Both Actinyl(VI) ions react via an associative exchange mechanism, most likely I-a. The Gibbs activation energies (Delta G(double dagger)) at 25 degrees C are 33-34 and 30-37 kJ mol(-1) for [PuO2(OH2)(5)](2+) and [UO2(OH2)(5)](2+), respectively Delta G(double dagger) for dissociative mechanisms (D, I-d) is higher by more than 15 kJ mol(-1).
机译:利用密度泛函理论(DFT)和波函数理论(WFT)研究了[PuO2(OH2)(5)](2+)和[UO2(OH2)(5)](2+)的水交换反应。几何形状和振动频率通过DFT和CPCM水化计算。使用通用的多配置准简并二阶摄动理论(GMC-QDPT2)评估了电子能量。用SO配置相互作用(SO-CI)计算的自旋轨道(SO)效应可以忽略不计。两种Act基(VI)离子均通过缔合交换机制(最可能是I-a)发生反应。 [PuO2(OH2)(5)](2+)和[UO2(OH2))在25摄氏度时的吉布斯活化能(Delta G(双匕首))为33-34和30-37 kJ mol(-1) (5)](2+)分别为解离机制(D,Id)的Delta G(双匕首)高出15 kJ mol(-1)以上。

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