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首页> 外文期刊>Chemistry: A European journal >Divergent Reactivity of Homologue ortho-Allenylbenzaldehydes Controlled by the Tether Length: Chromone versus Chromene Formation
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Divergent Reactivity of Homologue ortho-Allenylbenzaldehydes Controlled by the Tether Length: Chromone versus Chromene Formation

机译:系链长度控制的同型邻烯基苯甲醛的不同反应性:苯醌与二甲苯形成

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摘要

The divergent behavior of two homologue allenals, namely, 2-(buta-2,3-dienyloxy)- and 2-(propa-1,2-dienyloxy)benzaldehydes, as cyclization substrates is described. 2-(Buta-2,3-dienyloxy)benzaldehydes suffers a formal allenic carbocyclization reaction to afford chromenes, whereas 2-(propa-1,2-dienyloxy)benzaldehydes react to yield chromones. The formation of chromenes is strictly a formal hydroarylation process divided into two parts, namely, allenic Claisen-type rearrangement and oxycyclization. An unknown N-heterocyclic carbene (NHC)-catalyzed allenic hydroacylation reaction must be invoked to account for the preparation of chromones. ortho-Allenylbenzaldehydes bearing either electron-donating substituents or electron-withdrawing substituents worked well to afford both the hydroarylation and hydroacylation products. This unexpected difference in reactivity can be rationalized by means of density functional theory calculations.
机译:描述了两个同系异位烯醛,即2-(buta-2,3-dienyloxy)-和2-(prop-1,2-dienyloxy)苯甲醛作为环化底物的发散行为。 2-(Buta-2,3-dienyloxy)benzaldehydes经历正式的烯丙基碳环化反应以提供色烯,而2-(propa-1,2-dienyloxy)benzaldehydes反应生成色酮。色烯的形成严格来说是正式的加氢芳构化过程,分为两个部分,即烯丙基克莱森型重排和氧环化。必须调用未知的N杂环卡宾(NHC)催化的烯丙基加氢酰化反应来说明色酮的制备。带有给电子取代基或吸电子取代基的邻烯丙基苯甲醛均能很好地提供加氢芳基化和加氢酰化产物。反应性的这种意想不到的差异可以通过密度泛函理论计算来合理化。

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