首页> 外文期刊>Journal of the American Chemical Society >Organocatalytic [6+4] Cycloadditions via Zwitterionic Intermediates: Chemo-, Regio-, and Stereoselectivities
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Organocatalytic [6+4] Cycloadditions via Zwitterionic Intermediates: Chemo-, Regio-, and Stereoselectivities

机译:通过两性离子中间体进行的有机催化[6 + 4]环加成反应:化学选择性,区域选择性和立体选择性

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摘要

The mechanisms and origins of chemo- and stereoselectivities of the organocatalytic [6+4] cycloaddition between 2-cyclopentenone and tropone have been investigated by a combined computational and experimental study. In the presence of a cinchona alkaloid primary amine catalyst and an acid additive, 2-cyclopentenone forms a cross-dienamine intermediate that subsequently undergoes a stepwise [6+4] cycloaddition reaction via a zwitterionic intermediate. The rate determining transition state features a strong hydrogen-bonding interaction between the tropone oxygen atom and the protonated quinuclidine directing the reaction course leading to a highly periselective [6+4] cycloaddition. The importance of the strong hydrogen-bonding interaction is also demonstrated by the influence of the concentration of the acid additive on the yields and enantioselectivities of the reaction. The corresponding [4+2] cycloaddition reaction has a much higher energy barrier. The enantioselectivity of the [6+4] cycloaddition originates from different repulsive hydrogen-hydrogen interactions that distinguish the diastereomeric transition states.
机译:结合计算和实验研究,研究了2-环戊烯酮和对苯二酚之间有机催化的[6 + 4]环加成反应的化学和立体选择性的机理和起源。在金鸡纳生物碱伯胺催化剂和酸添加剂的存在下,2-环戊烯酮形成了一个二联胺中间体,该中间体随后通过两性离子中间体进行了逐步的[6 + 4]环加成反应。决定速率的过渡态的特征是,在tropone氧原子和质子化的奎宁环烷之间有很强的氢键相互作用,从而指导反应过程,从而导致高度选择性的[6 + 4]环加成反应。强烈的氢键相互作用的重要性还通过酸添加剂的浓度对反应的产率和对映选择性的影响来证明。相应的[4 + 2]环加成反应具有更高的能垒。 [6 + 4]环加成的对映选择性源于区分非对映体过渡态的不同排斥氢-氢相互作用。

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