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首页> 外文期刊>Angewandte Chemie >Four Oxidation States in a Single Photoredox Nickel-Based Catalytic Cycle: A Computational Study
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Four Oxidation States in a Single Photoredox Nickel-Based Catalytic Cycle: A Computational Study

机译:四种氧化态在单个Photoreox基镍催化周期中:计算研究

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摘要

The computational characterization of the full catalytic cycle for the synthesis of indoline from the reaction between iodoacetanilide and a terminal alkene catalyzed by a nickel complex and a photoactive ruthenium species is presented. A variety of oxidation states of nickel, Ni-0, Ni-I, Ni-II and Ni-III, is shown to participate in the mechanism. Ni-0 is necessary for the oxidative addition of the C-I bond, which goes through a Ni-I intermediate and results in a Ni-II .species. The Ni-II species inserts into the alkene, but does not undergo the reductive elimination necessary for C-N bond formation. This oxidatively induced reductive elimination can be accomplished only after oxidation to Ni(III )by the photoactive ruthenium species. All the reaction steps are computationally characterized, and the barriers for the single-electron transfer steps calculated using a modified version of the Marcus Theory.
机译:提出了从碘乙酰胺与镍复合物催化的反应合成吲哚吲哚的全催化循环的计算表征,并用镍复合物催化和光活性钌物质。 显示各种氧化态的镍,Ni-0,Ni-I,Ni-II和Ni-III,参与该机制。 Ni-0对于C-I键的氧化添加是必要的,其通过Ni-I中间体进行并导致Ni-II .pecies。 Ni-II物种插入烯烃中,但不经历C-N键形成所需的还原消除。 该氧化诱导的还原消除可以仅在通过光活性钌物种氧化到Ni(III)之后完成。 所有反应步骤都是计算的特征,以及使用Marcus理论的修改版本计算的单电子传输步骤的障碍。

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