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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Ab Initio Ligand-Field Theory Analysis and Covalency Trends in Actinide and Lanthanide Free Ions and Octahedral Complexes
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Ab Initio Ligand-Field Theory Analysis and Covalency Trends in Actinide and Lanthanide Free Ions and Octahedral Complexes

机译:ABINIO配体场理论分析和镧系元素和镧系元素和八面体络合物中的共和率趋势

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Actinide chemistry is gaining increased focus in modern research, particularly in the fields of energy research and molecular magnetism. However, the structure function and structure property relationships of actinides have still not been studied as intensely as those for transition metals. In this work, we report a detailed ab initio study of the spectroscopic, magnetic, and bonding properties of the trivalent actinide free, ions and their associated hexachloride complexes in octahedral I symmetry. The electronic structures of these systems are examined using complete active-space self-consistent-field calculations followed by second-order N-electron valence perturbation theory, including both scalar relativistic and spin orbit-coupling effects. The computed energies and wave functions are further analyzed by means of ab initio ligand-field theory (AILFT) and finally chemically interpreted by means of the angular overlap model (AOM). The derived Slater Condon and spin orbit parameters have allowed us to systematically rationalize the spectroscopic and magnetic properties of the investigated free ions and complexes along the entire actinide series. Overall, the AILFT-and AOM-derived parameters accurately reproduce the multireference electronic structure calculations. The small observed discrepancies with respect to experimentally derived ligand-field parameters are essentially due to an underestimation of the electronic correlation, which arises from both the constrained size of the active space (restricted to the f orbitals) and the limit of the perturbation approach to account for dynamical correlation. Our analysis also provides insight into the metal ligand covalency trends along the series. Consistent with natural population analysis, the nephelauxetic (Slater-Condon parameters) and relativistic nephelauxetic (spin-orbit-coupling) reductions determined for these complexes indicate a decrease in the covalency along the series. These trends also hold, to varying
机译:Actinide化学在现代研究中获得了更高的焦点,特别是在能源研究和分子磁场领域。然而,散曲线的结构和结构性质关系仍未被研究如过渡金属的那样强烈地研究。在这项工作中,我们报告了在八元性IIVALIVE,离子自由,离子和其相关的六氯化物复合物的三价,离子和其相关的六氯化物复合物的光谱,磁性和粘合性质的详细AB Initio研究。使用完整的主动空间自洽场计算检查这些系统的电子结构,然后进行二阶N-电子价扰动理论,包括标量相对论和旋转轨道耦合效果。通过AB Initio配体 - 场理论(AILFT)进一步分析计算的能量和波函数,并且最后通过角度重叠模型(AOM)化学解释。衍生的Slater Condon和旋转轨道参数使我们能够系统地将所研究的自由离子的光谱和磁性合理地沿整个Actinide系列沿着整个Actinide系列的复合物的光谱和磁性。总的来说,且AOM导出的参数精确地再现了多引导电子结构计算。关于实验衍生的配体 - 场参数的小观察到的差异基本上是由于低估了电子相关的,这是由有效空间的约束大小(限制为F轨道)和扰动方法的极限占动态相关性的。我们的分析还提供了沿着该系列的金属配体共和率趋势的洞察力。与自然人口分析一致,对这些配合物确定的肾儿氧(Slater-Condon参数)和相对论肾细胞(旋转轨道偶联)降低表明沿着该系列的共和率降低。这些趋势也持有,变化

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