Paul Aditya, Sengupta Arunava, Sarkar Bijan, Yadav Somnath
Department of Chemistry and Chemical Biology, Indian Institute of Technology (ISM) Dhanbad, Jharkhand 826004, India.
J Org Chem. 2023 Oct 20;88(20):14423-14434. doi: 10.1021/acs.joc.3c01442. Epub 2023 Oct 4.
Regioselective C-H functionalizations of indoles reported to date with directing groups at C3 mainly rely on functional groups that are linked to the indole via C-C bonds. However, groups that are linked to the indole core by C-X linkages are also attractive due to the possibility of further modifications of the C-X bond. Herein, we report a 3-acetoxy directing group for the regioselective C2 alkenylation of indoles via a C-H activation-based, cross-dehydrogenative, oxidative Heck-type reaction. The reaction is catalyzed by Pd(II) and Ag(I) with stoichiometric Cu(II) as the oxidant and provides the 2-alkenylated indoles in yields of 52-84%. The reaction conditions are compatible with several functional groups at different positions as well as different N-protecting groups or free NH groups on the indole core. With respect to the alkene coupling partners, the reactions are successful with acrylates, vinyl sulfates, and phosphates. Specifically designed experiments, as well as density functional theory (DFT) computational studies, reveal that a heterodinuclear [Pd(μ-OAc)Ag] bimetallic species is the actual catalyst responsible for the C-H alkenylation. A mechanistic path involving this catalytic species was also found to be favorable over other possible pathways for explaining the observed regioselectivity through DFT studies.
迄今为止报道的在吲哚C3位带有导向基团的区域选择性C-H官能团化反应主要依赖于通过C-C键与吲哚相连的官能团。然而,通过C-X键与吲哚核心相连的基团也很有吸引力,因为C-X键有进一步修饰的可能性。在此,我们报道了一种3-乙酰氧基导向基团,用于通过基于C-H活化的交叉脱氢氧化Heck型反应实现吲哚的区域选择性C2烯基化。该反应由Pd(II)和Ag(I)催化,化学计量的Cu(II)作为氧化剂,以52-84%的产率提供2-烯基化吲哚。反应条件与不同位置的多个官能团以及吲哚核心上不同的N-保护基团或游离NH基团兼容。对于烯烃偶联伙伴,与丙烯酸酯、乙烯基硫酸盐和磷酸盐的反应均成功。特别设计的实验以及密度泛函理论(DFT)计算研究表明,异双核[Pd(μ-OAc)Ag]双金属物种是负责C-H烯基化的实际催化剂。通过DFT研究还发现,涉及该催化物种的机理途径比其他可能的途径更有利于解释观察到的区域选择性。