Rational Design of 2-Substituted DMAP-N-oxides as Acyl Transfer Catalysts: Dynamic Kinetic Resolution of Azlactones

化学 亲核细胞 动力学分辨率 催化作用 吡啶 位阻效应 苯甲酸 电泳剂 药物化学 组合化学 对映选择合成 有机化学 计算化学
作者
Ming‐Sheng Xie,Bin Huang,Ning Li,Yin Tian,Xiao‐Xia Wu,Yun Deng,Gui‐Rong Qu,Hai‐Ming Guo
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:142 (45): 19226-19238 被引量:58
标识
DOI:10.1021/jacs.0c09075
摘要

A novel concept that conversion of chiral 2-substituted DMAP into its DMAP-N-oxide could significantly enhance the catalytic activity and still be used as an acyl transfer catalyst is presented. A new type of chiral 2-substituted DMAP-N-oxides, derived from l-prolinamides, has been rationally designed, facilely synthesized, and applied in the dynamic kinetic resolution of azlactones. Using simple MeOH as the nucleophile, various l-amino acid derivatives were produced in high yields (up to 98% yield) and enantioselectivities (up to 96% ee). Furthermore, α-deuterium labeled l-phenylalanine derivative was also obtained. Experiments and DFT calculations revealed that in 2-substituted DMAP-N-oxide, the oxygen atom acted as the nucleophilic site and the N-H bond functioned as the H-bond donor. High enantioselectivity of the reaction was governed by steric factors, and the addition of benzoic acid reduced the activation energy by participating in the construction of a H-bond bridge. The theoretical chemical study indicated that only when attack directions of the chiral catalyst were fully considered could the correct calculation results be obtained. This work paves the way for the utilization of the C2 position of the pyridine ring and the development of chiral 2-substituted DMAP-N-oxides as efficient acyl transfer catalysts.
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