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硼基导向的分子间烯丙基和炔丙基 C-H 胺化反应的选择性。

Boryl-Dictated Site-Selective Intermolecular Allylic and Propargylic C-H Amination.

机构信息

School of Pharmaceutical Sciences, Sun Yat-Sen University, Guangzhou510006, China.

出版信息

J Am Chem Soc. 2022 Aug 10;144(31):14380-14387. doi: 10.1021/jacs.2c06117. Epub 2022 Jul 27.

Abstract

For internal alkenes possessing two or more sets of electronically and sterically similar allylic protons, the site-selectivity for allylic C-H functionalization is fundamentally challenging. Previously, the negative inductive effect from an electronegative atom has been demonstrated to be effective for several inspiring regioselective C-H functionalization reactions. Yet, the use of an electropositive atom for a similar purpose remains to be developed. α-Aminoboronic acids and their derivatives have found widespread applications. Their current syntheses rely heavily on functional group manipulations. Herein we report a boryl-directed intermolecular C-H amination of allyl -methyliminodiacetyl boronates (B(MIDA)s) and propargylic B(MIDA)s to give α-amino boronates with an exceptionally high level of site-selectivities (up to 300:1). A wide variety of highly functionalized secondary and tertiary α-amino boronates are formed in generally good to excellent yields, thanks to the mildness of the reaction conditions. The unsaturated double and triple bonds within the product leave room for further decorations. Mechanistic studies reveal that the key stabilization effect of the B(MIDA) moiety on its adjacent developing positive charge is responsible for the high site-selectivity and that a closed transition state might be involved, as the reaction is fully stereoretentive. An activation effect of B(MIDA) is also found.

摘要

对于具有两组或更多组电子和空间相似的烯丙基质子的内部烯烃,烯丙基 C-H 功能化的位点选择性从根本上具有挑战性。以前,已经证明电负性原子的负诱导效应对于几种启发性的区域选择性 C-H 功能化反应是有效的。然而,对于类似的目的,使用正电性原子仍然有待开发。α-氨基硼酸及其衍生物有广泛的应用。它们的当前合成严重依赖于官能团的操作。在此,我们报告了烯丙基 - 甲基亚氨基二乙酸硼酸盐(B(MIDA))和炔丙基 B(MIDA)的硼基导向的分子间 C-H 胺化反应,以得到具有极高位点选择性(高达 300:1)的α-氨基硼酸酯。由于反应条件温和,形成了各种高度官能化的仲和叔α-氨基硼酸酯,产率通常良好至优异。产物中的不饱和双键和三键为进一步的修饰留出了空间。机理研究表明,B(MIDA)部分对其相邻的正电荷的关键稳定作用是高位点选择性的原因,并且可能涉及封闭的过渡态,因为反应是完全立体保留的。还发现了 B(MIDA)的活化效应。

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