化学
甲基乙烯基酮
布朗斯特德-洛瑞酸碱理论
路易斯酸
对映选择合成
有机催化
贝利斯-希尔曼反应
亚胺
催化作用
有机化学
高分子化学
不对称诱导
基础(拓扑)
数学
数学分析
作者
Jean‐Marc Garnier,Christopher Anstiss,Fei Liu
标识
DOI:10.1002/adsc.200800679
摘要
Abstract magnified image A Brønsted acid‐activated trifunctional organocatalyst, based on the BINAP scaffold, was used for the first time to catalyze aza‐Morita‐Baylis–Hillman reactions between N ‐tosylimines and methyl vinyl ketone with fast reaction rates and good enantioselectivity at room temperature. This trifunctional catalyst, containing a Lewis base, a Brønsted base, and a Brønsted acid, required acid activation to confer its enantioselectivity and rate improvement for both electron‐rich and electron‐deficient imine substrates. The role of the amino Lewis base of 1a was investigated and found to be the activity switch in response to an acid additive. The counterion of the acid additive was found to influence not only the excess ratio but also the sense of asymmetric induction.
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