Copper-catalyzed N-alkylation of indoles by N-tosylhydrazones

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Copper-catalyzed N-alkylation of indoles by N-tosylhydrazones

An efficient method for the direct N-alkylation of indoles via copper-catalyzed reductive cross coupling between N-tosylhydrazones and indole reagents has been developed. The reaction was performed in the presence of copper iodide and potassium hydroxide by utilization of tri(p-tolyl)phosphine as a ligand. A wide variety of N-alkylated indoles were obtained in moderate to good yields. The appli...

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Copper-catalyzed direct alkylation of 1,3-azoles with N-tosylhydrazones bearing a ferrocenyl group: a novel method for the synthesis of ferrocenyl-based ligands.

Copper-catalyzed cross-coupling of ferrocenyl ketone-derived N-tosylhydrazones with benzo[d]oxazole leads to the direct C-H bond functionalization by a secondary ferrocenyl alkyl group. This direct C-H bond alkylation of azoles with N-tosylhydrazones bearing a ferrocenyl group uses inexpensive CuBr as the catalyst without any ligand. The reaction is operationally simple and conducted under mild...

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Enantioselective N-alkylation of isatins and synthesis of chiral N-alkylated indoles.

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ژورنال

عنوان ژورنال: RSC Advances

سال: 2017

ISSN: 2046-2069

DOI: 10.1039/c7ra03765a