Xu Jinxiu, Song Yanji, Yang Jia, Yang Bingqian, Su Zhishan, Lin Lili, Feng Xiaoming
Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry, Sichuan University, 610064, Chengdu, China.
Angew Chem Int Ed Engl. 2023 Mar 20;62(13):e202217887. doi: 10.1002/anie.202217887. Epub 2023 Feb 13.
Compared to γ-addition, the α-addition of α-branched β,γ-unsaturated aldehydes faces larger steric hindrance and disrupts the π-π conjugation, which might be why very few examples are reported. In this article, a highly diastereo- and enantioselective α-regioselective Mannich reaction of isatin-derived ketimines with α-, β- or γ-branched β,γ-unsaturated aldehydes, generated in situ from Meinwald rearrangement of vinyl epoxides, is realized by using chiral N,N'-dioxide/Sc catalysts. A series of chiral α-quaternary allyl aldehydes and homoallylic alcohols with vicinal multisubstituted stereocenters are constructed in excellent yields, good d.r. and excellent ee values. Experimental studies and DFT (density functional theory) calculations reveal that the large steric hindrance of the ligand and the Boc (tButyloxy carbonyl) protecting group of imines are critical factors for the α-regioselectivity.
与γ-加成相比,α-支链β,γ-不饱和醛的α-加成面临更大的空间位阻,并破坏了π-π共轭,这可能就是报道的例子很少的原因。在本文中,通过使用手性N,N'-二氧化物/Sc催化剂,实现了异吲哚酮衍生的酮亚胺与由环氧乙烷的Meinwald重排原位生成的α-、β-或γ-支链β,γ-不饱和醛的高度非对映和对映选择性α-区域选择性曼尼希反应。构建了一系列具有邻位多取代立体中心的手性α-季铵烯丙醛和高烯丙醇,产率优异,非对映选择性良好,对映体过量值优异。实验研究和密度泛函理论(DFT)计算表明,配体的大空间位阻和亚胺的Boc(叔丁氧羰基)保护基是α-区域选择性的关键因素。