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Exploring the Interaction Natures in Plutonyl (VI) Complexes with Topological Analyses of Electron Density

机译:用电子密度拓扑分析探索P基(VI)配合物的相互作用性质

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摘要

The interaction natures between Pu and different ligands in several plutonyl (VI) complexes are investigated by performing topological analyses of electron density. The geometrical structures in both gaseous and aqueous phases are obtained with B3LYP functional, and are generally in agreement with available theoretical and experimental results when combined with all-electron segmented all-electron relativistic contracted (SARC) basis set. The Pu–Oyl bond orders show significant linear dependence on bond length and the charge of oxygen atoms in plutonyl moiety. The closed-shell interactions were identified for Pu-Ligand bonds in most complexes with quantum theory of atoms in molecules (QTAIM) analyses. Meanwhile, we found that some Pu–Ligand bonds, like Pu–OH, show weak covalent. The interactive nature of Pu–ligand bonds were revealed based on the interaction quantum atom (IQA) energy decomposition approach, and our results indicate that all Pu–Ligand interactions is dominated by the electrostatic attraction interaction as expected. Meanwhile it is also important to note that the quantum mechanical exchange-correlation contributions can not be ignored. By means of the non-covalent interaction (NCI) approach it has been found that some weak and repulsion interactions existed in plutonyl(VI) complexes, which can not be distinguished by QTAIM, can be successfully identified.
机译:通过对电子密度进行拓扑分析,研究了Pu与几种several基(VI)配合物中不同配体之间的相互作用性质。气相和水相的几何结构均具有B3LYP官能团,并且与全电子分段的全电子相对论收缩(SARC)基集组合时,通常与可用的理论和实验结果相符。 Pu-Oyl键序显示出对键长和p基部分中氧原子电荷的线性关系。使用分子中原子的量子理论(QTAIM)分析,在大多数配合物中确定了Pu-配体键的闭壳相互作用。同时,我们发现一些Pu–Ligand键,例如Pu–OH -,显示弱共价。基于相互作用量子原子(IQA)能量分解方法揭示了Pu-配体键的相互作用性质,我们的结果表明,所有Pu-Ligand相互作用均受静电吸引相互作用的支配。同时,还必须注意,不能忽略量子力学交换相关贡献。通过非共价相互作用(NCI)的方法,已发现可以成功地识别QTAIM不能区分的p基(VI)配合物中存在的一些弱相互作用和排斥相互作用。

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