Chemodivergent Synthesis of Fused Indole and Spirocyclic Indoline Through Solo‐Coordination‐Vacant Ir(III) Pincer Complex‐Catalyzed Acylnitrenoid Transfer

Despite the medicinal importance of fused indoles and spirocyclic indolines, a divergent synthesis of these two frameworks from identical starting materials remains elusive. Herein, we report a solo-coordination-vacant Ir(III) pincer complex-catalyzed chemodivergent annulation of indole-derived dioxazolones that selectively constructs either scaffold by simply modulating reaction conditions. The transformation proceeds via a common iridium-nitrenoid intermediate that diverges through either a 1,2-alkyl migration or hydride-transfer pathway, delivering both classes of products with high efficiency. Notably, the spirocyclization pathway operates at an exceptionally low catalyst loading of 0.01 mol%, affording a remarkable turnover number up to 6800. This work not only fills the gap in divergent access to these two medicinally relevant heterocycles but also demonstrates the synthetic potential of nitrenoid intermediates in enabling tunable indole dearomatization.

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Publication Details

Journal
Chemistry - A European Journal
Published
2026-09-29
DOI
https://doi.org/10.1002/chem.71746
Primary Topic
Catalytic C–H Functionalization Methods
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article
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article

Chemodivergent Synthesis of Fused Indole and Spirocyclic Indoline Through Solo‐Coordination‐Vacant Ir(III) Pincer Complex‐Catalyzed Acylnitrenoid Transfer

Chuanyong Wang, Jiajia Ma, Yunzhe Wang, Cheng‐Yu Gu et al.
Chemistry - A European Journal
Catalytic C–H Functionalization Methods
article

Chemodivergent Synthesis of Fused Indole and Spirocyclic Indoline Through Solo‐Coordination‐Vacant Ir(III) Pincer Complex‐Catalyzed Acylnitrenoid Transfer

Chuanyong Wang, Jiajia Ma, Yunzhe Wang, Cheng‐Yu Gu, Yuan‐Liang Zou
article en

Abstract

Despite the medicinal importance of fused indoles and spirocyclic indolines, a divergent synthesis of these two frameworks from identical starting materials remains elusive. Herein, we report a solo-coordination-vacant Ir(III) pincer complex-catalyzed chemodivergent annulation of indole-derived dioxazolones that selectively constructs either scaffold by simply modulating reaction conditions. The transformation proceeds via a common iridium-nitrenoid intermediate that diverges through either a 1,2-alkyl migration or hydride-transfer pathway, delivering both classes of products with high efficiency. Notably, the spirocyclization pathway operates at an exceptionally low catalyst loading of 0.01 mol%, affording a remarkable turnover number up to 6800. This work not only fills the gap in divergent access to these two medicinally relevant heterocycles but also demonstrates the synthetic potential of nitrenoid intermediates in enabling tunable indole dearomatization.

Chemistry - A European Journal
Yangzhou University (CN), Nanjing University (CN)
Openalex Percentile: Top 22%
Catalytic C–H Functionalization Methods
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