首页> 美国卫生研究院文献>Scientific Reports >From Mechanistic Study to Chiral Catalyst Optimization: Theoretical Insight into Binaphthophosphepine-catalyzed Asymmetric Intramolecular 3 + 2 Cycloaddition
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From Mechanistic Study to Chiral Catalyst Optimization: Theoretical Insight into Binaphthophosphepine-catalyzed Asymmetric Intramolecular 3 + 2 Cycloaddition

机译:从机理研究到手性催化剂优化:对双萘酚膦催化的不对称分子内3 + 2环加成反应的理论认识

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摘要

Density functional M11 was used to study the mechanism and enantioselectivity of a binaphthophosphepine-catalyzed intramolecular [3 + 2] cycloaddition reaction. The computational results revealed that this reaction proceeds through nucleophilic addition of the phosphine catalyst to the allene, which yields a zwitterionic phosphonium intermediate. The subsequent stepwise [3 + 2] annulation process, which starts with the intramolecular nucleophilic addition of the allenoate moiety to the electron-deficient olefin group, determines the enantioselectivity of the reaction. This step is followed by a ring-closing reaction and water-assisted proton-transfer process to afford the final product with concomitant regeneration of the phosphine catalyst. Theoretical predictions of the enantioselectivity for various phosphine catalysts were consistent with experimental observations, and 2D contour maps played an important role in explaining the origin of the enantioselectivity. Moreover, on the basis of our theoretical study, new binaphthophosphepine catalysts were designed and that are expecting to afford higher enantioselectivity in this cycloaddition reaction.
机译:密度泛函M11用于研究联萘膦催化的分子内[3 + 2]环加成反应的机理和对映选择性。计算结果表明,该反应是通过将膦催化剂亲核加成到烯丙基中而进行的,从而产生两性离子phospho中间体。随后的逐步[3 + 2]环化过程决定了反应的对映选择性,该过程以烯丙酸酯部分的分子内亲核加成为电子缺陷型烯烃基。该步骤之后是闭环反应和水辅助质子转移过程,以提供最终产物,同时伴随着膦催化剂的再生。各种膦催化剂的对映选择性的理论预测与实验观察结果一致,二维等值线图在解释对映选择性的起源方面起着重要作用。此外,在我们的理论研究的基础上,设计了新的联萘膦催化剂,并期望在该环加成反应中提供更高的对映选择性。

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