Iron-catalyzed chemoselective reduction of enimines to N-Allylic amines via hydrosilylation

TitleIron-catalyzed chemoselective reduction of enimines to N-Allylic amines via hydrosilylation
Publication TypeJournal Article
Year of Publication2025
AuthorsTewari, T, Shaikh, MH, Sharma, H, Vanka, K, Chikkali, SH
JournalAsian Journal of Organic Chemistry
Volume14
Issue5
Date PublishedMAY
Type of ArticleArticle
ISSN2193-5807
KeywordsCinnamyl amine, Imine hydrosilylation, iron catalysis, Iron hydride, Phosphine
Abstract

Chemoselective hydrosilylation of unsaturated imines is challenging as the two double bonds compete for the reaction. Here in, we report an iron-catalyzed chemoselective hydrosilylation of enimines leading to the generation of allyl amines in the presence of phosphine ligand. A low-valent Fe(0) complex [(BDA)Fe(CO)3] catalyzed the hydrosilylation of enimine at room temperature and exhibited broad substrate scope including a variety of enimine (cinnamylimine, allylimine) and ketimine. Mechanistic investigations revealed that the reaction proceeds through an oxidative addition of the silane compound, leading to the formation of an iron hydride intermediate. Subsequently, a two-electron pathway facilitates the hydrosilylation of the enimine substrate. This has been supported by preparing a well-defined Fe(II)-silane complex and using it as a catalyst control. Based on experimental and computational investigations, a plausible Chalk-Harrod-type mechanism is proposed.

DOI10.1002/ajoc.202400762
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

2.8

Divison category: 
Physical and Materials Chemistry
Polymer Science & Engineering
Database: 
Web of Science (WoS)

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