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Selective Iron Catalyzed Synthesis of N-Alkylated Indolines and Indoles.


ABSTRACT: Whereas iron catalysts usually promote catalyzed C3-alkylation of indole derivatives via a borrowing-hydrogen methodology using alcohols as the electrophilic partners, this contribution shows how to switch the selectivity towards N-alkylation. Thus, starting from indoline derivatives, N-alkylation was efficiently performed using a tricarbonyl(cyclopentadienone) iron complex as the catalyst in trifluoroethanol in the presence of alcohols leading to the corresponding N-alkylated indoline derivatives in 31-99 % yields (28 examples). The one-pot, two-step strategy for the selective N-alkylation of indolines is completed by an oxidation to give the corresponding N-alkylated indoles in 31-90 % yields (15 examples). This unprecedented oxidation methodology involves an iron salt catalyst associated with (2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPO) and a stoichiometric amount of t-BuOOH at room temperature.

SUBMITTER: Wu J 

PROVIDER: S-EPMC9796591 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Selective Iron Catalyzed Synthesis of N-Alkylated Indolines and Indoles.

Wu Jiajun J   Tongdee Satawat S   Cordier Marie M   Darcel Christophe C  

Chemistry (Weinheim an der Bergstrasse, Germany) 20220722 54


Whereas iron catalysts usually promote catalyzed C3-alkylation of indole derivatives via a borrowing-hydrogen methodology using alcohols as the electrophilic partners, this contribution shows how to switch the selectivity towards N-alkylation. Thus, starting from indoline derivatives, N-alkylation was efficiently performed using a tricarbonyl(cyclopentadienone) iron complex as the catalyst in trifluoroethanol in the presence of alcohols leading to the corresponding N-alkylated indoline derivativ  ...[more]

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