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Diversity-oriented general protocol for the synthesis of privileged oxygen scaffolds: pyrones, coumarins,benzocoumarins and naphthocoumarins

机译:面向优先级氧气支架合成的面向多样性的通用协议:吡喃酮,香豆素,苯并香豆素和萘香豆素

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摘要

A new general methodology for the synthesis of various functionalized privileged oxygen heterocyclic scaffolds, viz. pyrones, coumarins, and benzannulated coumarins, is developed. The synthesis proceeds through carbanion-induced ring transformation of lactones with various methylene carbonyl compounds followed by DDQ-mediated unprecedented oxidative cleavage of oxaylidenes intermediates. Studies of the mechanism of the conversions of oxaylidene intermediates into corresponding carbonyl compounds in the presence of DDQ revealed that the reactions took place via the formation of a Michael adduct instead of an intermolecular charge transfer complex. The methodology offers the fabrication of diverse privileged scaffolds with tolerance for many functional groups onto the oxygen heterocyclic molecular framework.
机译:一种合成各种功能化特权氧杂环骨架的新的通用方法。开发了吡喃酮,香豆素和苯甲酰香豆素。合成过程是通过碳负离子诱导的内酯与各种亚甲基羰基化合物的环转化,然后通过DDQ介导的氧杂亚砜中间体的氧化裂解而实现的。对在DDQ存在下草酰亚烷基中间体转化为相应羰基化合物的机理的研究表明,该反应是通过形成迈克尔加合物而不是分子间电荷转移络合物而发生的。该方法提供了对氧杂环分子骨架上的许多官能团具有耐受性的多种特权支架的制造。

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  • 来源
    《Organic & biomolecular chemistry》 |2013年第32期|5239-5253|共15页
  • 作者单位

    Division of Medicinal and Process Chemistry, CSIR-Central Drug Research Institute,Lucknow, India;

    Division of Medicinal and Process Chemistry, CSIR-Central Drug Research Institute,Lucknow, India;

    Division of Medicinal and Process Chemistry, CSIR-Central Drug Research Institute,Lucknow, India;

    Division of Molecular and Structural Biology, CSIR-Central Drug Research Institute,Lucknow, India;

    Division of Molecular and Structural Biology, CSIR-Central Drug Research Institute,Lucknow, India;

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