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Ruthenium-Catalyzed Dynamic Kinetic Resolution Asymmetric Transfer Hydrogenation of beta-Chromanones by an Elimination-Induced Racemization Mechanism

机译:通过消除诱导的外消旋机制,钌催化的动态动态动态动态动态动态动态输出不对称转移氢化β-苯酮

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摘要

Chiral chroman derivatives are important pharmacophores in natural and synthetic bioactive molecules. The discovery of catalytic asymmetric methods for the synthesis of these compounds is an important goal. Ruthenium-catalyzed asymmetric transfer hydrogenation under strongly basic conditions has been found to induce dynamic kinetic resolution of beta-substituted chromanones, producing valuable chromanols in high yields and with high levels of stereocontrol. The reaction proceeds by base-catalyzed racemization of the beta-stereocenter through a conjugate elimination/conjugate addition pathway in concert with a highly selective ketone transfer hydrogenation step. Computational analysis of the catalyst, substrate, and transition state structures has revealed the driving interactions for diastereoselectivity as well as unexpected CH-O stabilizing interactions between the catalyst sulfonamide and the reacting substrate.
机译:手性Chroman衍生物是天然和合成生物活性分子中的重要药程。 用于合成这些化合物的催化不对称方法的发现是重要目标。 已经发现钌催化的不对称转移氢化在强碱条件下诱导β取代的苯酮的动态动力学分辨率,以高产率和高水平的立体控制产生有价值的ChromanOls。 反应通过缀合物消除/缀合物加成途径的β-立体封闭物的基础催化的外催化,与高度选择性的酮转移氢化步骤进行缀合物消除/缀合物加法途径进行。 催化剂,基材和过渡状态结构的计算分析揭示了对非对映选择性的驱动相互作用以及催化剂磺酰胺和反应基板之间的意外的CH-O稳定相互作用。

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