Synthesis of Pyrroloquinazolinones via Base-Promoted Domino Reaction of 7-Vinylindoles with In Situ Formed Isocyanates from Dioxazolones

Abstract Herein, we report a novel base-promoted domino reaction between 7-vinylindoles and dioxazolones, enabling the efficient one-pot synthesis of pyrroloquinazolinone scaffolds in moderate to excellent yields (up to 95%). This transition-metal-free protocol employs readily available dioxazolones as isocyanate precursors and proceeds through a cascade sequence involving decarboxylation, Lossen rearrangement, nucleophilic addition, and aza-Michael addition. Through this cascade process, complex polycyclic indole-based scaffolds are efficiently constructed in a single operation. The established methodology features operational simplicity, broad substrate scope, scalability to gram-scale synthesis, and potential for late-stage functionalization.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.joc.6c01979
Primary Topic
Quinazolinone synthesis and applications
Type
article
Field-Weighted Citation Impact
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article

Synthesis of Pyrroloquinazolinones via Base-Promoted Domino Reaction of 7-Vinylindoles with In Situ Formed Isocyanates from Dioxazolones

Yu Xin, Nengzhong Wang, Zhong‐Yan Cao, Hui Qin Yao et al.
The Journal of Organic Chemistry
Quinazolinone synthesis and applications
article

Synthesis of Pyrroloquinazolinones via Base-Promoted Domino Reaction of 7-Vinylindoles with In Situ Formed Isocyanates from Dioxazolones

Yu Xin, Nengzhong Wang, Zhong‐Yan Cao, Hui Qin Yao, Nianyu Huang, Linxuan Li, Jinkun Zhang, Haojie Gao, Xiaoquan Qiu, Jinglei Wang, Yushuang Chen
article en

Abstract

Abstract Herein, we report a novel base-promoted domino reaction between 7-vinylindoles and dioxazolones, enabling the efficient one-pot synthesis of pyrroloquinazolinone scaffolds in moderate to excellent yields (up to 95%). This transition-metal-free protocol employs readily available dioxazolones as isocyanate precursors and proceeds through a cascade sequence involving decarboxylation, Lossen rearrangement, nucleophilic addition, and aza-Michael addition. Through this cascade process, complex polycyclic indole-based scaffolds are efficiently constructed in a single operation. The established methodology features operational simplicity, broad substrate scope, scalability to gram-scale synthesis, and potential for late-stage functionalization.

The Journal of Organic Chemistry
China Three Gorges University (CN), Nanjing Forestry University (CN), Chongqing University of Science and Technology (CN), Henan University (CN), Chongqing Three Gorges Central Hospital (CN)
Openalex Percentile: Top 26%
Quinazolinone synthesis and applications
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