DBU-Catalyzed One-Pot Domino Synthesis of Polycyclic Benzofuran(thiophene)-pyridine-Fused Indolizines

Abstract Herein, we have developed a DBU-catalyzed, iterative C–C/C–C/C–N/C–N bond forming domino reaction of 2-(pyridin-2-yl)acetonitrile, 2-aroyl-benzofuran-3-carbaldehyde/2-aroyl-benzothiophene-3-carbaldehyde, and trimethylsilyl cyanide that directly furnishes polycyclic benzofuran(thiophene)-pyridine-fused indolizines. This one-pot domino protocol efficiently enables a Knoevenagel condensation and concomitant [4 + 1] cycloaddition/cyclization cascade under very mild and simple reaction conditions, thereby paving the way for the fusion of five- and six-membered rings within a single molecular structure. The resultant products do not require chromatographic purification, as they can be crystallized directly from the reaction mixture using ethanol.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-10-08
DOI
https://doi.org/10.1021/acs.joc.6c01961
Primary Topic
Synthesis and Reactivity of Heterocycles
Type
article
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article

DBU-Catalyzed One-Pot Domino Synthesis of Polycyclic Benzofuran(thiophene)-pyridine-Fused Indolizines

Kyeong Lee, Kihyeon Eom, Hitesh B. Jalani, Yongseok Choi et al.
The Journal of Organic Chemistry
Synthesis and Reactivity of Heterocycles
article

DBU-Catalyzed One-Pot Domino Synthesis of Polycyclic Benzofuran(thiophene)-pyridine-Fused Indolizines

Kyeong Lee, Kihyeon Eom, Hitesh B. Jalani, Yongseok Choi, Younggeun Park, Juyoung Lee, Sooseong Ahn
article en

Abstract

Abstract Herein, we have developed a DBU-catalyzed, iterative C–C/C–C/C–N/C–N bond forming domino reaction of 2-(pyridin-2-yl)acetonitrile, 2-aroyl-benzofuran-3-carbaldehyde/2-aroyl-benzothiophene-3-carbaldehyde, and trimethylsilyl cyanide that directly furnishes polycyclic benzofuran(thiophene)-pyridine-fused indolizines. This one-pot domino protocol efficiently enables a Knoevenagel condensation and concomitant [4 + 1] cycloaddition/cyclization cascade under very mild and simple reaction conditions, thereby paving the way for the fusion of five- and six-membered rings within a single molecular structure. The resultant products do not require chromatographic purification, as they can be crystallized directly from the reaction mixture using ethanol.

The Journal of Organic Chemistry
Korea University (KR), Dongguk University (KR)
Openalex Percentile: Top 25%
Synthesis and Reactivity of Heterocycles
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