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Stereoselectivities of Histidine-Catalyzed Asymmetric Aldol Additions and Contrasts with Proline Catalysis: A Quantum Mechanical Analysis

机译:量子力学分析:组氨酸催化不对称羟醛缩合增加和脯氨酸催化对比的立体选择性

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摘要

Quantum mechanical calculations reveal the origin of diastereo- and enantioselectivities of aldol reactions between aldehydes catalyzed by histidine, and differences between related reactions catalyzed by proline. A stereochemical model that explains both the sense and the high levels of the experimentally observed stereoselectivity is proposed. The computations suggest that both the imidazolium and the carboxylic acid functionalities of histidine are viable hydrogen-bond donors that can stabilize the cyclic aldolization transition state. The stereoselectivity is proposed to arise from minimization of gauche interactions around the forming C–C bond.
机译:量子力学计算揭示了组氨酸催化醛与醛与醛之间反应的起源和对映射性的起源,以及脯氨酸催化的相关反应之间的差异。提出了一种立体化学模型,解释了这种意义和高水平的实验观察的立体选择性。该计算表明,咪唑鎓和组氨酸的羧酸官能团都是可行的氢键供体,其可以稳定环状醛化转变状态。提出了立体选择性,从最小化形成C-C键周围的Gauche相互作用。

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