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Comments on the nature of the bonding in oxygenated dinuclear copper enzyme models

机译:关于氧化双核铜酶模型中键合性质的评论

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摘要

The nature of the bonding in model complexes of di-copper metalloenzymes has been analyzed by means of the electronic localization function (ELF) and by the quantum theory of atoms in molecules (QTAIM). The constrained space orbital variations (CSOV) approach has also been used. Density functional theory (DFT) and CASSCF calculations have been carried out on several models of tyrosinase such as the sole Cu2O22+ central core, the Cu2O2(NH3)62+ complex and the Cu2O2(Imidazol)62+ complex. The influence on the central Cu2O2 moiety of both levels of calculation and ligand environment have been discussed. The distinct bonding modes have been characterized for the two major known structures: [Cu2(μ–η2: η2–O2)]2+ and [Cu2(μ–O2)]2+. Particular attention has been given to the analysis of the O–O and Cu–O bonds and the nature of the bonding modes has also been analyzed in terms of mesomeric structures. The ELF topological approach shows a significant conservation of the topology between the DFT and CASSCF approaches. Particularly, three-center Cu–O–Cu bonds are observed when the ligands are attached to the central core. At the DFT level, the importance of self interaction effects are emphasized. Although, the DFT approach does not appear to be suitable for the computation of the electronic structure of the isolated Cu2O2 central core, competitive self interaction mechanisms lead to an imperfect but acceptable model when using imidazol ligands. Our results confirm to a certain extent the observations of [M.F. Rode, H.J. Werner, Theoretical Chemistry Accounts 4–5 (2005) 247.] who found a qualitative agreement between B3LYP and localized MRCI calculations when dealing with the Cu2O2 central core with six ammonia ligands.
机译:已通过电子定位功能(ELF)和分子中原子的量子理论(QTAIM)分析了双铜金属酶模型配合物中键合的性质。还使用了约束空间轨道变化(CSOV)方法。密度泛函理论(DFT)和CASSCF计算已在多种酪氨酸酶模型上进行,例如唯一的 Cu 2 < mrow> O 2 2 + < / mrow> 核心, Cu 2 O < / mrow> 2 NH 3 6 < / mn> 2 + 复合体和 Cu < / mrow> 2 O 2 咪唑 6 2 + 复合体。讨论了计算水平和配体环境对中心Cu2O2部分的影响。已经针对两种主要的已知结构表征了不同的键合模式:[Cu2(μ–η 2 :η 2 –O2)] 2 + 和[Cu2(μ–O2)] 2 + 。特别注意了O-O和Cu-O键的分析,并且还根据介晶结构分析了键合模式的性质。 ELF拓扑方法显示了DFT和CASSCF方法之间拓扑的显着保留。特别是,当配体连接到中心核时,会观察到三中心的Cu–O–Cu键。在DFT级别上,强调了自我交互作用的重要性。尽管DFT方法似乎不适合计算孤立的Cu2O2中心核的电子结构,但是当使用咪唑配体时,竞争性的自我相互作用机制会产生不完善但可以接受的模型。我们的结果在一定程度上证实了[M.F. Rode,H.J。Werner,理论化学帐户第4-5页(2005)247.],他发现当使用六个氨配体处理Cu2O2中心核时,B3LYP与局部MRCI计算之间存在定性一致性。

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