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Decarboxylative Ketone Aldol Reactions: Development and Mechanistic Evaluation under Metal-Free Conditions

机译:脱羧酮羟醛反应:在无金属条件下的发展和机理评价

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Malonic acid half thioesters (MAHTs) and malonic acid half oxyesters (MAHOs) are shown to undergo decarboxylative nucleophilic addition reactions with ketone and aldehyde electrophiles in the presence of stoichiometric or catalytic quantities of triethylamine at room temperature. The ability to perform these reactions under metal-free conditions has enabled a detailed mechanistic analysis of the reaction pathway leading to the 1H NMR spectroscopic characterization of a postnucleophilic addition/predecarboxylation intermediate and experimental evidence for a reversible formation of this intermediate followed by an irreversible decarboxylation. Rate constants for each of the bond forming/bond breaking steps in the reaction pathway were also determined, casting light on the differing reactivity betweenMAHOandMAHT nucleophiles in these processes. Finally, the mechanistic insights gained through these studies have been employed in the development of a new decarboxylative coumarin synthesis.
机译:在室温下,在化学计量或催化量的三乙胺存在下,丙二酸半硫酯(MAHT)和丙二酸半含氧酯(MAHO)与酮和醛亲电子发生脱羧亲核加成反应。在不含金属的条件下进行这些反应的能力使得能够对反应路径进行详细的机械分析,从而导致亲核后加成/预脱羧化中间体的1H NMR光谱表征以及该中间体可逆形成并随后不可逆脱羧的实验证据。还确定了反应途径中每个键形成/键断裂步骤的速率常数,从而阐明了在这些过程中MAHO和MAHT亲核试剂之间不同的反应性。最后,通过这些研究获得的机理见解已被用于开发新的脱羧香豆素合成方法。

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