Transition Metal‐Catalyzed Direct Functionalization of Carbazoles DOI
Vikash Kumar,

S. Sudharsan,

Lusina Mantry

et al.

The Chemical Record, Journal Year: 2025, Volume and Issue: unknown

Published: April 29, 2025

Abstract Carbazoles are an important class of nitrogen‐containing heterocycles found in diverse natural products, bioactive molecules, and functional materials. Their broader applications have driven extensive research into their synthesis functionalization. Among various approaches, transition metal‐catalyzed C−H activation has emerged as a powerful tool for direct functionalization, offering regioselectivity, efficiency, sustainability. This review comprehensively summarizes advancements functionalization carbazoles. Various catalytic systems employing palladium, ruthenium, rhodium, nickel, cobalt, copper, iron enabled alkylation, alkenylation, acylation, arylation, alkynylation, heteroatom incorporation These methodologies late‐stage diversification opened avenues accessing structurally complex carbazole derivatives with tailored properties. The aims to provide comprehensive guide researchers exploring via activation, highlighting key mechanistic insights, scope, emerging trends this field.

Language: Английский

Transition Metal‐Catalyzed Direct Functionalization of Carbazoles DOI
Vikash Kumar,

S. Sudharsan,

Lusina Mantry

et al.

The Chemical Record, Journal Year: 2025, Volume and Issue: unknown

Published: April 29, 2025

Abstract Carbazoles are an important class of nitrogen‐containing heterocycles found in diverse natural products, bioactive molecules, and functional materials. Their broader applications have driven extensive research into their synthesis functionalization. Among various approaches, transition metal‐catalyzed C−H activation has emerged as a powerful tool for direct functionalization, offering regioselectivity, efficiency, sustainability. This review comprehensively summarizes advancements functionalization carbazoles. Various catalytic systems employing palladium, ruthenium, rhodium, nickel, cobalt, copper, iron enabled alkylation, alkenylation, acylation, arylation, alkynylation, heteroatom incorporation These methodologies late‐stage diversification opened avenues accessing structurally complex carbazole derivatives with tailored properties. The aims to provide comprehensive guide researchers exploring via activation, highlighting key mechanistic insights, scope, emerging trends this field.

Language: Английский

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