化学
动力学分辨率
组合化学
叔醇
功能群
分子
对映选择合成
航程(航空)
有机化学
密度泛函理论
立体异构
计算化学
群(周期表)
光学活性
立体化学
选择(遗传算法)
化学合成
动能
铜
反应条件
手性(物理)
作者
Han‐Chi Wang,Jia-Yi Ma,Nana Sun,Zhixue Song,Shuai Zhu,Q Q Wang,Shi‐Liang Shi,Bo Sun
摘要
Despite the widespread occurrence of enantiomerically enriched tertiary alcohols in bioactive molecules and pharmaceuticals, efficient methods for preparing optically pure α,β-stereogenic tertiary alcohols remain scarce. Here, we report a dynamic kinetic asymmetric allylation of readily available racemic ketones with 2-aza-1,4-dienes. Notably, through the judicious selection of chiral ligands for copper catalysts, both E - and Z -isomers can be accessed with high efficiency and stereocontrol. Density functional theory (DFT) calculations reveal that ligand-controlled face-selective attacks via distinct allylcopper intermediates dictate the stereodivergent E / Z selectivity. This reaction achieves excellent diastereo- and enantioselectivity, accommodates a broad range of heterocyclic substrates, and exhibits extensive functional group tolerance. We demonstrate the utility of this protocol by modifying Profen-type drugs and rapidly synthesizing complex drug molecules. This study provides a versatile and efficient route to diverse chiral tertiary alcohols, offering a powerful tool for pharmaceutical assembly.
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