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手性镍(II)配合物催化的α-重氮吡唑酰胺的对映选择性 Doyle-Kirmse 反应。

Chiral Nickel(II) Complex Catalyzed Enantioselective Doyle-Kirmse Reaction of α-Diazo Pyrazoleamides.

机构信息

Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry , Sichuan University , Chengdu 610064 , China.

Collaborative Innovation Center of Chemical Science and Engineering , Tianjin 300072 , China.

出版信息

J Am Chem Soc. 2018 Mar 7;140(9):3299-3305. doi: 10.1021/jacs.7b12486. Epub 2018 Feb 22.

Abstract

Although high enantioselectivity of [2,3]-sigmatropic rearrangement of sulfonium ylides (Doyle-Kirmse reaction) has proven surprisingly elusive using classic chiral Rh(II) and Cu(I) catalysts, in principle it is due to the difficulty in fine discrimination of the heterotopic lone pairs of sulfur and chirality inversion at sulfur of sulfonium ylides. Here, we show that the synergistic merger of new α-diazo pyrazoleamides and a chiral N, N'-dioxide-nickel(II) complex catalyst enables a highly enantioselective Doyle-Kirmse reaction. The pyrazoleamide substituent serves as both an activating and a directing group for the ready formation of a metal-carbene- and Lewis-acid-bonded ylide intermediate in the assistance of a dual-tasking nickel(II) complex. An alternative chiral Lewis-acid-bonded ylide pathway greatly improves the product enantiopurity even for the reaction of a symmetric diallylsulfane. The majority of transformations over a series of aryl- or vinyl-substituted α-diazo pyrazoleamindes and sulfides proceed rapidly (within 5-20 min in most cases) with excellent results (up to 99% yield and 96% ee), providing a breakthrough in enantioselective Doyle-Kirmse reaction.

摘要

尽管使用经典的手性 Rh(II)和 Cu(I)催化剂,[2,3]-sigmatropic 重排硫叶立德(Doyle-Kirmse 反应)的高对映选择性出人意料地难以实现,但原则上这是由于难以精细区分硫的异位孤对电子和硫的手性反转硫叶立德。在这里,我们表明,新型α-重氮吡唑酰胺和手性 N, N'-二氧化物-镍(II)配合物催化剂的协同合并使高度对映选择性 Doyle-Kirmse 反应成为可能。吡唑酰胺取代基既是易于形成金属卡宾和路易斯酸键合叶立德中间体的活化和导向基团,也是双任务镍(II)配合物的辅助基团。路易斯酸键合的手性叶立德途径的替代途径即使对于对称的二烯丙基砜的反应也能极大地提高产物对映纯度。一系列芳基或乙烯基取代的α-重氮吡唑酰胺和硫化物的大多数转化都迅速进行(在大多数情况下,在 5-20 分钟内),并且效果极佳(高达 99%的产率和 96%的 ee),在手性 Doyle-Kirmse 反应中取得了突破。

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