Issue 4, 2022

Rongalite-induced transition-metal and hydride-free reductive aldol reaction: a rapid access to 3,3′-disubstituted oxindoles and its mechanistic studies

Abstract

A transition-metal and hydride-free reductive aldol reaction has been developed for the synthesis of biologically active 3,3′-disubstituted oxindoles from isatin derivatives using rongalite. In this protocol, rongalite plays a dual role as a hydride-free reducing agent and a C1 unit donor. This transition metal-free method enables the synthesis of a wide range of 3-hydroxy-3-hydroxymethyloxindoles and 3-amino-3-hydroxymethyloxindoles with 79–96% yields. One-pot reductive hydroxymethylation, inexpensive rongalite (ca. $0.03/1 g), mild reaction conditions and short reaction time are some of the key features of this synthetic method. This protocol is also applicable to gram scale synthesis.

Graphical abstract: Rongalite-induced transition-metal and hydride-free reductive aldol reaction: a rapid access to 3,3′-disubstituted oxindoles and its mechanistic studies

Supplementary files

Article information

Article type
Paper
Submitted
21 Nov 2021
Accepted
22 Dec 2021
First published
23 Dec 2021

Org. Biomol. Chem., 2022,20, 808-816

Rongalite-induced transition-metal and hydride-free reductive aldol reaction: a rapid access to 3,3′-disubstituted oxindoles and its mechanistic studies

S. Golla, N. Anugu, S. Jalagam and H. P. Kokatla, Org. Biomol. Chem., 2022, 20, 808 DOI: 10.1039/D1OB02284A

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