首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >Controlling alkyne reactivity by means of a copper-catalyzed radical reaction system for the synthesis of functionalized quaternary carbons
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Controlling alkyne reactivity by means of a copper-catalyzed radical reaction system for the synthesis of functionalized quaternary carbons

机译:通过铜催化的自由基反应系统控制炔烃反应性用于合成功能化季碳

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摘要

A terminal alkyne is one of the most useful reactants for the synthesis of alkyne and alkene derivatives. Because an alkyne undergoes addition reaction at a C–C triple bond or cross-coupling at a terminal C–H bond. Combining those reaction patterns could realize a new reaction methodology to synthesize complex molecules including C–C multiple bonds. In this report, we found that the reaction of 3 equivalents of terminal alkyne 1 (aryl substituted alkyne) and an α-bromocarbonyl compound 2 (tertiary alkyl radical precursor) undergoes tandem alkyl radical addition/Sonogashira coupling to produce 1,3-enyne compound 3 possessing a quaternary carbon in the presence of a copper catalyst. Moreover, the reaction of α-bromocarbonyl compound 2 and an alkyne 4 possessing a carboxamide moiety undergoes tandem alkyl radical addition/C–H coupling to produce indolinone derivative 5.
机译:炔烃是合成炔烃和烯烃衍生物的最有用反应物之一。因为炔烃在C-C三键处的加成反应或在末端C-H键处的交叉偶联。结合那些反应模式可以实现新的反应方法,以合成包括C-C多键的复杂分子。在本报告中,我们发现3当量末端炔烃1(芳基取代炔烃)和α-溴羰基化合物2(叔烷基自由基前体)的反应经历串联烷基根自由基添加/ Sonogashira偶联,以产生1,3- enyne化合物3在铜催化剂存在下具有季碳。此外,α-溴羰基化合物2的反应和具有甲酰胺部分的炔烃4经历串联烷基自由基加成/ C-H偶联以产生吲哚酮衍生物5。

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