首页> 美国卫生研究院文献>Frontiers in Chemistry >Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of NN-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2
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Combined Multistate and Kohn-Sham Density Functional Theory Studies of the Elusive Mechanism of N-Dealkylation of NN-Dimethylanilines Mediated by the Biomimetic Nonheme Oxidant FeIV(O)(N4Py)(ClO4)2

机译:仿生非血红素氧化剂FeIV(O)(N4Py)(ClO4)2介导的NN-二甲基苯胺N-去烷基化机理的多态和Kohn-Sham组合密度泛函理论研究

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摘要

The oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is one of the most interesting processes in bioinorganic and oxidative chemistry. However, the mechanisms of these reactions are still elusive and controversy due to the involvement of highly reactive metal-oxo intermediates with multiple spin states, despite extensive experimental efforts, especially for the N-dealkylation of N,N-dialkyalinines. In this work, we employed multistate density functional theory (MSDFT) and the Kohn-Sham DFT to investigate the mechanism of N-demethylation of N,N-dimethyalinines oxidized by the reaction intermediate FeIV(O)(N4Py)(ClO4)2. The Kohn-Sham DFT study demonstrated that the reaction proceeds via a rate-limiting hydrogen atom transfer (HAT) step and a subsequent barrier-free oxygen rebound step to form the carbinol product. The MSDFT investigation on the first C-H activation further showed that this step is an initial hydrogen atom abstraction that is highly correlated between CEPT and HAT, i.e., both CEPT and HAT processes make significant contributions to the mechanism before reaching the diabatic crossing point, then the valence bond character of the adiabatic ground state is switched to the CEPT product configuration. The findings from this work may be applicable to other hydrogen abstraction process.
机译:由血红素和非血红素酶以及相关的仿生酶介导的氧化C-H键活化是生物无机和氧化化学中最令人感兴趣的过程之一。然而,尽管进行了广泛的实验努力,特别是对于N,N-二烷基ya氨酸的N-脱烷基化,但是由于涉及具有多种自旋态的高反应性金属-氧代中间体的参与,这些反应的机理仍是难以捉摸的和有争议的。在这项工作中,我们采用多态密度泛函理论(MSDFT)和Kohn-Sham DFT研究了反应中间体Fe IV (O)氧化的N,N-二甲亚胺的N-去甲基化机理。 (N4Py)(ClO4)2。 Kohn-Sham DFT研究表明,反应通过限速氢原子转移(HAT)步骤和随后的无障碍氧回弹步骤进行,从而形成甲醇产物。 MSDFT对第一个CH活化的研究进一步表明,此步骤是CEPT与HAT之间高度相关的初始氢原子抽象,即CEPT和HAT过程在达到绝热交叉点之前对机理均做出了重要贡献,然后绝热基态的价键特性切换为CEPT产品配置。这项工作的发现可能适用于其他氢气提取过程。

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