Modular Synthesis of Di‐ and Triazadibenzoazulenes by a Cross‐Coupling/Cycloisomerization Strategy

Imidazo[1,2‐ a ]pyridines and imidazo[1,2‐ a ]pyrazines are important nitrogen‐containing heterocycles with applications in medicinal and materials chemistry. Herein, we report a regioselective synthetic strategy for the preparation of novel diaza‐ and triazadibenzoazulene derivatives through sequential Pd‐catalyzed Sonogashira and Suzuki–Miyaura cross‐coupling reactions, followed by Brønsted acid‐promoted cycloisomerization. The sequence of the cross‐coupling reactions enabled selective access to distinct regioisomeric intermediates, which were efficiently converted into fused seven‐membered azaazulene frameworks under optimized conditions. The methodology offers a broad substrate scope and affords the target compounds in good‐to‐excellent yields.

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Publication Details

Journal
European Journal of Organic Chemistry
Published
2026-09-22
DOI
https://doi.org/10.1002/ejoc.70855
Primary Topic
Synthesis and Reactivity of Heterocycles
Type
article
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article

Modular Synthesis of Di‐ and Triazadibenzoazulenes by a Cross‐Coupling/Cycloisomerization Strategy

Karyna Kulyk, Peter Langer, Jonas Surkau, Martin Köckerling et al.
European Journal of Organic Chemistry
Synthesis and Reactivity of Heterocycles
article

Modular Synthesis of Di‐ and Triazadibenzoazulenes by a Cross‐Coupling/Cycloisomerization Strategy

Karyna Kulyk, Peter Langer, Jonas Surkau, Martin Köckerling, Karsten Paul Lüdtke, Peter Ehlers, Artyom V. Petrosyan
article en

Abstract

Imidazo[1,2‐ a ]pyridines and imidazo[1,2‐ a ]pyrazines are important nitrogen‐containing heterocycles with applications in medicinal and materials chemistry. Herein, we report a regioselective synthetic strategy for the preparation of novel diaza‐ and triazadibenzoazulene derivatives through sequential Pd‐catalyzed Sonogashira and Suzuki–Miyaura cross‐coupling reactions, followed by Brønsted acid‐promoted cycloisomerization. The sequence of the cross‐coupling reactions enabled selective access to distinct regioisomeric intermediates, which were efficiently converted into fused seven‐membered azaazulene frameworks under optimized conditions. The methodology offers a broad substrate scope and affords the target compounds in good‐to‐excellent yields.

European Journal of Organic Chemistry
University of Rostock (DE)
Openalex Percentile: Top 20%
Synthesis and Reactivity of Heterocycles
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