首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >Switchable highly regioselective synthesis of 34-dihydroquinoxalin-2(1H)ones from o-phenylenediamines and aroylpyruvates
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Switchable highly regioselective synthesis of 34-dihydroquinoxalin-2(1H)ones from o-phenylenediamines and aroylpyruvates

机译:从邻苯二胺和芳酰基丙酮酸盐可切换的高度区域选择性合成34-二氢喹喔啉-2(1H)酮

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摘要

3-Acylmethylidene-3,4-dihydroquinoxalin-2(1H)-ones are compounds which possess a wide range of physical and pharmaceutical applications. These compounds can be easily prepared by cyclocondensation of o-phenylenediamines and aroylpyruvates. Unsymmetrically substituted o-phenylenediamines can be obtained form regioisomeric mixtures of 3,4-dihydroquinoxalin-2(1H)-ones. It is often quite difficult to get a pure regioisomer and determine its structure without controlling the reaction selectivity and exploitation of complex NMR techniques (HSQC, NOESY, HMBC). This article examines the regioselectivity of the cyclocondensation between six monosubstituted o-phenylenediamines (-OMe, -F, -Cl, -COOH, -CN, -NO2) and the derivatives of p-chlorobenzoylpyruvate (ester or acid) which we studied. Six regioisomeric 3,4-dihydroquinoxalin-2(1H)-one pairs were selectively prepared and characterised. Based on our experiences, a simplified methodology for determining the structure of the regioisomers was proposed. We developed two general and highly selective methodologies starting from the same o-phenylenediamines and activated 4-chlorobenzoylpyruvates (ester or acid) enabling switching of 3,4-dihydroquinoxalin-2(1H)-one regioselectivity in a predictable manner. For comparison, all regioselective cyclocondensations were performed with the same standardized conditions (DMF, rt, 3 days), differing only by the additives p-TsOH or HOBt/DIC (hydroxybenzotriazole/N,N’-diisopropylcarbodiimide). Both selected methods are simple, general and highly regioselective (72–97%). A mechanism for the regioselectivity was also proposed and discussed. This study can be used as a guide when choosing the most optimal reaction conditions for the synthesis of the desired 3,4-dihydroquinoxalin-2(1H)-one regioisomers with the best selectivity. The demonstrated methodologies in this article may also be applied to differently substituted 3,4-dihydroquinoxalin-2(1H)-ones in general, which could expand the synthetic impact of our results.
机译:3-酰基亚甲基-3,4-二氢喹喔啉-2(1H)-1是具有广泛的物理和药物应用的化合物。这些化合物可以通过邻苯二胺和芳酰基丙酮酸酯的环缩反应容易地制备。不对称取代的邻苯二胺可以从3,4-二氢喹喔啉-2(1H)-一的区域异构体混合物中获得。在不控制反应选择性和开发复杂的NMR技术(HSQC,NOESY,HMBC)的情况下,通常很难获得纯的区域异构体并确定其结构。本文研究了我们研究的六个单取代的邻苯二胺(-OMe,-F,-Cl,-COOH,-CN,-NO2)与对氯苯甲酰基丙酮酸(酯或酸)衍生物之间的环缩反应的区域选择性。选择性地制备并表征了六种区域异构的3,4-二氢喹喔啉-2(1H)-对。根据我们的经验,提出了一种确定区域异构体结构的简化方法。我们从相同的邻苯二胺和活化的4-氯苯甲酰基丙酮酸酯(酯或酸)开发了两种通用且高度选择性的方法,从而能够以可预测的方式切换3,4-二氢喹喔啉-2(1H)-区域选择性。为了进行比较,所有区域选择性环缩合均在相同的标准条件下(DMF,室温,3天)进行,仅区别在于添加剂p-TsOH或HOBt / DIC(羟基苯并三唑/ N,N'-二异丙基碳二亚胺)。两种选择的方法都是简单,通用和高度区域选择性的(72–97%)。还提出并讨论了区域选择性的机制。本研究可为选择所需的最佳选择性的最佳3,4-二氢喹喔啉-2(1H)-一区域异构体的合成选择最佳反应条件时提供指导。本文中论证的方法学还可以普遍应用于不同取代的3,4-二氢喹喔啉-2(1H)-酮类化合物,这可能会扩大我们研究结果的综合影响。

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