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Evaluation of the electronic structure and charge transfer in the Cu2O22+ core using multiconfigurational methods

机译:使用多组件方法评估Cu2O22 +核中的电子结构和电荷转移

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摘要

The energy profile and electronic structure in the [Cu2O2](2+) core have been studied through the peroxo to bis-mu-oxo isomerization process, using multiconfigurational methods. Different strategies were performed to obtain the absolute energies of the singlet ground state using the accuracy potential of the Difference Dedicated Configuration Interaction (DDCI) method. For each structure, the DDCI energies for the ground states were obtained. The results indicate that the minimum bis-mu-oxo is approximately 8 kcal/mol more stable than the peroxo. The analysis of the electronic structure of the peroxo and bis-mu-oxo forms reveals the existence of different extents of charge transfer between the O-2 molecule and the Cu, leading to different oxidation states in the Cu and O-2 molecule.
机译:使用多功能性方法,通过过氧至双-Mu-氧代异构化方法研究了[Cu2O2](2+)核中的能量曲线和电子结构。 使用差异专用配置交互(DDCI)方法的精度电位来执行不同的策略以获得单向接地状态的绝对能量。 对于每个结构,获得了地态的DDCI能量。 结果表明,最小BIS-MU-氧代比Peroxo更稳定。 对Peroxo和BIS-MU-氧代形式的电子结构的分析揭示了O-2分子和Cu之间的电荷转移的不同范围的存在,导致Cu和O-2分子中的不同氧化态。

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