阿托品
烯丙基重排
异构化
化学
轴手性
对映选择合成
组合化学
轴对称性
催化作用
模块化设计
计算化学
立体化学
有机化学
计算机科学
物理
操作系统
量子力学
作者
Jiayu Zou,Yuying Yang,Jun Gu,Fei Liu,Zhiwen Ye,Wenbin Yi,Ying He
标识
DOI:10.1002/anie.202310320
摘要
Abstract Axially chiral N ‐substituted quinazolinones are important bioactive molecules, which are presented in many synthetic drugs. However, most strategies toward their atroposelective synthesis are mainly limited to the axially chiral arylquinazolinone frameworks. The development of modular synthetic methods to access diverse quinazolinone‐based atropisomers remains scarce and challenging. Herein, we report the regio‐ and atroposelective synthesis of axially chiral N ‐vinylquinazolinones via the strategy of asymmetric allylic substitution‐isomerization. The catalysis system utilized both asymmetric transition‐metal catalysis and organocatalysis to efficiently afford trisubstituted and tetrasubstituted N ‐vinylquinazolinone atropisomers, respectively. With the meticulous design of β‐substituted allylic substrates, both Z ‐ and E ‐tetrasubstituted axially chiral N ‐vinylquinazolinones were obtained in good yields and high enantioselectivities.
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