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Assessing Covalency in Cerium and Uranium Hexachlorides: A Correlated Wavefunction and Density Functional Theory Study

机译:评估铈和六氯化铀中的共价:相关的波函数和密度泛函理论研究

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The electronic structure of a series of uranium and cerium hexachlorides in a variety of oxidation states was evaluated at both the correlated wavefunction and density functional (DFT) levels of theory. Following recent experimental observations of covalency in tetravalent cerium hexachlorides, bonding character was studied using topological and integrated analysis based on the quantum theory of atoms in molecules (QTAIM). This analysis revealed that M–Cl covalency was strongly dependent on oxidation state, with greater covalency found in higher oxidation state complexes. Comparison of M–Cl delocalisation indices revealed a discrepancy between correlated wavefunction and DFT-derived values. Decomposition of these delocalisation indices demonstrated that the origin of this discrepancy lay in ungerade contributions associated with the f-manifold which we suggest is due to self-interaction error inherent to DFT-based methods. By all measures used in this study, extremely similar levels of covalency between complexes of U and Ce in the same oxidation state was found.
机译:在相关波函数和密度泛函(DFT)的理论水平上,评估了处于各种氧化态的一系列铀和六氯化铈的电子结构。在最近对四价六价铈铈中的价态进行实验观察之后,基于分子中原子的量子理论(QTAIM),使用拓扑和集成分析研究了键合特性。该分析表明,M–Cl的共价性强烈依赖于氧化态,在更高的氧化态络合物中发现的共价性更高。 M–Cl离域指数的比较显示相关波函数与DFT派生值之间存在差异。这些离域指数的分解表明,这种差异的根源在于与f流形相关的无贡献贡献,我们认为这是基于DFT的方法固有的自交互误差。通过本研究中使用的所有措施,发现在相同氧化态下,U和Ce的络合物之间的价态极为相似。

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