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首页> 外文期刊>Organic & biomolecular chemistry >Diastereoselective synthesis of spiro[carbazole-3,5′-pyrimidines] and spiro[carbazole-3,1′-cyclohexanes] via four-component reaction
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Diastereoselective synthesis of spiro[carbazole-3,5′-pyrimidines] and spiro[carbazole-3,1′-cyclohexanes] via four-component reaction

机译:通过四组分反应对螺ε和吡啶酰基 - 吡啶烷基化合物合成螺ε和螺唑-3,1'-环己烷合成

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摘要

Functionalized spiro[carbazole-3,5′-pyrimidines] and spiro(carbazole-3,1′-cyclohexanes] were efficiently synthesized in satisfactory yields with high diastereoselectivity by CuSO_4 catalyzed multicomponent reaction of indole-2-acetate, aromatic aldehyde and 1,3-dimethylbarbituric acid or dimedone. The reaction was finished with sequential Diels-Alder reaction of both in situ generated indole-2,3-quinodimethane and a dienophile. Additionally, the initially formed spiro[carbazole-3,5′-pyrimidines] were converted to dehydrogenated spiro[carbazole-3,5′-pyrimidines] by DDQ oxidation. The initially formed spiro[carba-zole-3,1′-cyclohexanes] were converted to δ-valerolactone-substituted carbazoles by a DDQ promoted Baeyer-Villiger oxidation process.
机译:官能化螺旋[咔唑-3,5'-嘧啶]和螺(咔唑-3,1'-环己烷]以令人满意的产量有效地合成吲哚-2-乙酸酯,芳族醛和1, 3-二甲基巴比妥酸或Dimedone。反应完成了原位产生的吲哚-2,3-喹喔烷和增强剂的顺序Diels-ald反应。另外,最初形成的螺蛇→咔唑-3,5'-嘧啶]是 通过DDQ氧化转化为脱氢螺纹蒸汽蒸汽ε]。最初形成的螺旋[Carba- Zole-3,1'-环己烷]通过DDQ促进Baeyer-Villiger转化为Δ-戊内甲酯取代的咔唑。 氧化过程。

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  • 来源
    《Organic & biomolecular chemistry 》 |2021年第28期| 6322-6327| 共6页
  • 作者单位

    College of Chemistry & Chemical Engineering Yangzhou University Yangzhou 225002 China;

    College of Chemistry & Chemical Engineering Yangzhou University Yangzhou 225002 China;

    College of Chemistry & Chemical Engineering Yangzhou University Yangzhou 225002 China;

    College of Chemistry & Chemical Engineering Yangzhou University Yangzhou 225002 China;

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