Chemodivergent Synthesis of Indole Derivatives: [2 + 3]-Annulation of Oxindole-Derived MBH Carbonates with α-Enolic Dithioesters and Subsequent Branching Transformations

Abstract A chemodivergent synthetic strategy for constructing a series of structurally diverse indole derivatives has been developed, utilizing oxindole-derived Morita-Baylis-Hillman (MBH) carbonates and α-enolic dithioesters as key building blocks. By leveraging the unique reactivity of both components, including the multisite reactivity of α-enolic dithioesters and the versatile reaction potential of oxindole-based MBH derivatives, the reaction proceeds via an initial [2 + 3] annulation to afford polysubstituted thiophene scaffolds tethered with an oxindole motif. This common annulation intermediate undergoes branching transformations under tailored reaction conditions: lactam-enolization-mediated trapping delivers hydrothiophene-tethered indoles, whereas base-promoted skeletal rearrangement furnishes two classes of spirooxindole derivatives spirofused with cyclopentadienes or thiopyrans.

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Journal
The Journal of Organic Chemistry
Published
2026-10-01
DOI
https://doi.org/10.1021/acs.joc.6c01172
Primary Topic
Synthesis of heterocyclic compounds
Type
article
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article

Chemodivergent Synthesis of Indole Derivatives: [2 + 3]-Annulation of Oxindole-Derived MBH Carbonates with α-Enolic Dithioesters and Subsequent Branching Transformations

Sifeng Li, Yixuan He, Taimin Wang, Bin Cheng et al.
The Journal of Organic Chemistry
Synthesis of heterocyclic compounds
article

Chemodivergent Synthesis of Indole Derivatives: [2 + 3]-Annulation of Oxindole-Derived MBH Carbonates with α-Enolic Dithioesters and Subsequent Branching Transformations

Sifeng Li, Yixuan He, Taimin Wang, Bin Cheng, Yun Luo, Ping Wu, Peijun Liu, Peng Li, Si Zhao, Ying Zhang
article en

Abstract

Abstract A chemodivergent synthetic strategy for constructing a series of structurally diverse indole derivatives has been developed, utilizing oxindole-derived Morita-Baylis-Hillman (MBH) carbonates and α-enolic dithioesters as key building blocks. By leveraging the unique reactivity of both components, including the multisite reactivity of α-enolic dithioesters and the versatile reaction potential of oxindole-based MBH derivatives, the reaction proceeds via an initial [2 + 3] annulation to afford polysubstituted thiophene scaffolds tethered with an oxindole motif. This common annulation intermediate undergoes branching transformations under tailored reaction conditions: lactam-enolization-mediated trapping delivers hydrothiophene-tethered indoles, whereas base-promoted skeletal rearrangement furnishes two classes of spirooxindole derivatives spirofused with cyclopentadienes or thiopyrans.

The Journal of Organic Chemistry
Zunyi Medical University (CN), Shenzhen Polytechnic University (CN), Lanzhou City University (CN), Dezhou University (CN)
Openalex Percentile: Top 22%
Synthesis of heterocyclic compounds
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Chemodivergent Synthesis of Indole Derivatives: [2 + 3]-Annulation of Oxindole-Derived MBH Carbonates with α-Enolic Dithioesters and Subsequent Branching Transformations — Sifeng Li, Yixuan He, et al. · The Journal of Organic Chemistry (2026) | TGRS Research Map | TGRS