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Cobalt–Carbon Bond Formation Reaction via Ligand Reduction of Porphycene–Cobalt(II)Complex and Its Noninnocent Reactivity

机译:通过二茂铁-钴(II)的配体还原形成钴-碳键反应络合物及其非纯反应性

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摘要

The interesting redox properties and reactivity of metalloporphycene have been studied for decades; however, the detailed experimental investigation on the reactivity and reaction mechanism under inert condition combined with theoretical calculations had not been performed so far. In this study, the novel reactivity of the reduced form of the cobalt porphycene with alkyl halides to form cobalt–carbon (Co–C) bonds was revealed. Under electrochemical reductive conditions, not the central cobalt, but the ligand was reduced and reacted with alkyl halides to afford the cobalt–alkyl complexes under N2 atmosphere in a glovebox. The reaction mechanism was clarified by the combination of experimental and theoretical studies that the porphycene ligand works as a noninnocent ligand and allows the SN2-type Co–C bond formation. This result provides us the possibility of the reaction triggered by the reduction of ligand with macrocyclic π-conjugated system, not by the reduction of metal.
机译:数十年来,人们都对茂金属的有趣的氧化还原性质和反应性进行了研究。然而,到目前为止,还没有进行有关惰性条件下反应性和反应机理的详细实验研究,没有结合理论计算。在这项研究中,揭示了钴卟啉还原形式与烷基卤化物形成钴-碳(Co-C)键的新型反应性。在电化学还原条件下,不是中心钴,而是配体被还原并与卤代烷反应,在手套箱中在N2气氛下提供了钴-烷基络合物。实验和理论研究相结合,阐明了反应机理,即卟啉配体起着非纯配体的作用,并允许形成SN2型Co–C键。该结果为我们提供了通过大环π-共轭体系还原配体而不是金属还原引发反应的可能性。

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