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钯催化的 1,4-二烯的不对称烯丙基 C-H 烷基化反应中的亲核试剂依赖的 Z/E-和区域选择性。

Nucleophile-Dependent Z/ E- and Regioselectivity in the Palladium-Catalyzed Asymmetric Allylic C-H Alkylation of 1,4-Dienes.

机构信息

Hefei National Laboratory for Physical Sciences at the Microscale and Department of Chemistry , University of Science and Technology of China , Hefei 230026 , China.

Department of Chemistry , Zhejiang University , Hangzhou 310027 , China.

出版信息

J Am Chem Soc. 2019 Apr 10;141(14):5824-5834. doi: 10.1021/jacs.8b13582. Epub 2019 Mar 27.

Abstract

The asymmetric allylic alkylation (AAA), which features employing active allylic substrates, has historical significance in organic synthesis. The allylic C-H alkylation is principally more atom- and step-economic than the classical allylic functionalizations and thus can be considered a transformative variant. However, asymmetric allylic C-H alkylation reactions are still scarce and yet underdeveloped. Herein, we have found that Z/ E- and regioselectivities in the Pd-catalyzed asymmetric allylic C-H alkylation of 1,4-dienes are highly dependent on the type of nucleophiles. A highly stereoselective allylic C-H alkylation of 1,4-dienes with azlactones has been established by palladium-chiral phosphoramidite catalysis. The protocol proceeds under mild conditions and can accommodate a wide scope of substrates, delivering structurally divergent α,α-disubstituted α-amino acid surrogates in high yields and excellent levels of diastereo-, Z/ E-, regio-, and enantioselectivities. Notably, this method provides key chiral intermediates for an efficient synthesis of lepadiformine marine alkaloids. Experimental and computational studies on the reaction mechanism suggest a novel concerted proton and two-electron transfer process for the allylic C-H cleavage and reveal that the Z/ E- and regioselectivities are governed by the geometry and coordination pattern of nucleophiles.

摘要

不对称烯丙基烷基化(AAA),其特点是使用活性烯丙基底物,在有机合成中具有历史意义。烯丙基 C-H 烷基化在原子经济性和步骤经济性方面主要优于经典的烯丙基官能化,因此可以被认为是一种变革性的变体。然而,不对称烯丙基 C-H 烷基化反应仍然很少且尚未得到充分发展。在此,我们发现钯催化的 1,4-二烯不对称烯丙基 C-H 烷基化中 Z/ E-和区域选择性高度依赖于亲核试剂的类型。通过钯-手性膦酰胺催化建立了具有高立体选择性的烯丙基 C-H 烷基化反应。该方案在温和条件下进行,可以适应广泛的底物范围,以高收率和出色的非对映选择性、Z/ E-选择性、区域选择性和对映选择性提供结构不同的α,α-二取代α-氨基酸替代物。值得注意的是,该方法为高效合成 Lepadiformine 海洋生物碱提供了关键的手性中间体。反应机理的实验和计算研究表明,烯丙基 C-H 断裂遵循协同质子和两电子转移过程,揭示了 Z/ E-和区域选择性受亲核试剂的几何形状和配位模式控制。

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