Fe2O2的低洼电子态与分子结构

Z. Cao, M. Duran, M. Solà
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引用次数: 5

摘要

采用杂化B3LYP密度泛函和耦合簇分子轨道方法研究了Fe2O2的结构、成键和基态和低洼激发态的相对稳定性。计算表明(µ-O)2菱形7B2u态是Fe2O2的基态。在Fe2O2的势能超表面上也发现了扭曲四面体和平面侧对模式的稳定分子二铁氧Fe2-O2配合物。计算得到的两种菱形环面内变形对应的红外主动频率与观测值吻合较好。基于自然键轨道和Bader拓扑分析,讨论了(µ-O)2菱形Fe2O2的成键特征。这些分析表明,在7B2u基态下,环上存在有效的Fe-Fe键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-lying electronic states and molecular structure of Fe2O2
The structure, bonding and relative stabilities of the ground and low-lying excited states of Fe2O2 have been studied by the hybrid B3LYP density-functional and coupled-cluster molecular orbital methods. Calculations indicate that the (µ-O)2 rhombic 7B2u state is the ground state for Fe2O2. Stable molecular diiron oxo Fe2-O2 complexes in distorted tetrahedral and planar side-on modes have been also located on the potential-energy hypersurfaces of Fe2O2. The calculated IR-active frequencies corresponding to two in-plane deformations of the rhombic ring agree well with the observed values. The bonding features of the (µ-O)2 rhombic Fe2O2 have been discussed based on natural bond orbital and Bader topological analyses. These analyses show that an effective Fe–Fe bonding across the ring exists in the 7B2u ground state.
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