Department of Chemistry, Indian Institute of Technology Jammu Jagti, Jammu 181221, India.
Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, West Bengal 741246, India.
J Org Chem. 2023 May 5;88(9):5827-5843. doi: 10.1021/acs.joc.3c00248. Epub 2023 Apr 10.
Herein, we report azo-benzimidazole containing cobalt complexes (-) for alcohol dehydrogenation-triggered C3-alkylation of indoles. In complexes , ligands are redox noninnocent and showed facile irreversible reduction followed by Co(II)/Co(I) reduction in close-lying potentials. Taking advantage of facile redox events in -, the first aerial dehydrogenation of alcohols to their corresponding carbonyl compounds is explored. Subsequently, C3-alkylation of indole was studied using alcohols as the alkylating agents. The developed catalytic protocol was found to be efficient and very selective. It has a broad substrate scope and good functional group tolerance. As far as we are aware, it is the first homogeneous cobalt catalyst for C3-alkylation of indole using alcohol as the alkylating agent. Detailed mechanistic studies, including a deuterium labeling experiment, have suggested a borrowing hydrogen method for the C3-alkylation of indole. The coordinated ligand, cooperatively with the Co(II)/Co(I) redox couple, oxidized the coordinated alkoxide in a radical pathway to result in the carbonyl compound (Scheme 1), which on subsequent condensation with indole generates the alkylideneindolenine intermediate "". Reduction of "" by an azo-anion radical Co(I) catalyst intermediate resulted in the C3-alkylated indole.
在此,我们报告了一种含偶氮苯并咪唑的钴配合物(-),用于醇脱氢引发的吲哚 C3-烷基化反应。在配合物中,配体是氧化还原非惰性的,在紧密相邻的电位下表现出易于不可逆还原,随后是 Co(II)/Co(I)还原。利用 - 中易于发生的氧化还原事件,我们探索了醇的首次气固脱氢反应,生成相应的羰基化合物。随后,使用醇作为烷基化试剂研究了吲哚的 C3-烷基化反应。所开发的催化方案被证明是高效和非常选择性的。它具有广泛的底物范围和良好的官能团耐受性。据我们所知,这是第一个使用醇作为烷基化试剂的均相钴催化剂,用于吲哚的 C3-烷基化。详细的机理研究,包括氘标记实验,提出了一种吲哚 C3-烷基化的借氢方法。配位的配体与 Co(II)/Co(I)氧化还原偶联一起,在自由基途径中氧化配位的烷氧基,生成羰基化合物(方案 1),随后与吲哚缩合生成亚烷基吲哚啉中间体“”。通过偶氮阴离子自由基 Co(I)催化剂中间体还原“”,生成 C3-烷基化吲哚。