Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.
Department of Chemistry, University of California, Berkeley, California 94720, United States.
J Am Chem Soc. 2022 Jun 29;144(25):11425-11433. doi: 10.1021/jacs.2c04182. Epub 2022 Jun 14.
A highly enantioselective aza-Darzens reaction (up to 99% ee) catalyzed by an enantiopure supramolecular host has been discovered. To understand the role of host structure on reaction outcome, nine new gallium(III)-based enantiopure supramolecular assemblies were prepared via substitution of the external chiral amide. Despite the distal nature of the substitution in these catalysts, changes in enantioselectivity (61 to 90% ee) in the aziridine product were observed. The enantioselectivities were correlated to the flexibility of the supramolecular host scaffold as measured by the kinetics of exchange of a model cationic guest. This correlation led to the development of a best-in-class catalyst by substituting the gallium(III)-based host with one based on indium(III), which generated the most flexible and selective catalyst.
已发现由手性超分子主体催化的高对映选择性氮杂-Darzens 反应(高达 99%ee)。为了了解主体结构对反应结果的影响,通过取代外部手性酰胺制备了九个新的基于镓(III)的手性超分子组装体。尽管这些催化剂中的取代基具有远程性质,但观察到氮杂环丙烷产物的对映选择性(61%至 90%ee)发生变化。对映选择性与超分子主体支架的柔韧性相关,该柔韧性通过模型阳离子客体交换的动力学来衡量。这种相关性导致通过用基于铟(III)的主体取代基于镓(III)的主体来开发最佳类催化剂,该催化剂生成了最灵活和选择性的催化剂。