| Literature DB >> 33800380 |
Ye Eun Kim1, Hyunsung Cho1, Yoo Jin Lim1, Chorong Kim1, Sang Hyup Lee1.
Abstract
Studies on a one-pot synthesis of novel multisubstituted 1-alkoxyindoles 1 and their mechanistic investigations are presented. The synthesis of 1 was successfully achieved through consecutive four step reactions from substrates 2. The substrates 2, prepared through a two-step synthetic sequence, underwent three consecutive reactions of nitro reduction, intramolecular condensation, and nucleophilic 1,5-addition to provide the intermediates, 1-hydroxyindoles 8, which then were alkylated in situ with alkyl halide to afford the novel target products 1. We optimized the reaction conditions for 1 focusing on the alkylation step, along with the consideration of formation of intermediates 8. The optimized condition was SnCl2·2H2O (3.3 eq) and alcohols (R1OH, 2.0 eq) for 1-2 h at 40 °C and then, base (10 eq) and alkyl halides (R2Y, 2.0 eq) for 1-4 h at 25-50 °C. Notably, all four step reactions were performed in one-pot to give 1 in good to modest yields. Furthermore, the mechanistic aspects were also discussed regarding the reaction pathways and the formation of side products. The significance lies in development of efficient one-pot reactions and in generation of new 1-alkoxyindoles.Entities:
Keywords: 1-alkoxyindoles; O-alkylation; intramolecular cyclization; nitro reduction; nitrone; stannous chloride
Year: 2021 PMID: 33800380 PMCID: PMC7962848 DOI: 10.3390/molecules26051466
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411