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双环[1.1.0]丁基硼酸酯复合物与亲电试剂反应实现 C-C σ 键的双功能化:反应开发、范围和立体化学起源。

Difunctionalization of C-C σ-Bonds Enabled by the Reaction of Bicyclo[1.1.0]butyl Boronate Complexes with Electrophiles: Reaction Development, Scope, and Stereochemical Origins.

机构信息

School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, United Kingdom.

出版信息

J Am Chem Soc. 2020 Sep 30;142(39):16766-16775. doi: 10.1021/jacs.0c07357. Epub 2020 Sep 18.

Abstract

Difunctionalization reactions of C-C σ-bonds have the potential to streamline access to molecules that would otherwise be difficult to prepare. However, the development of such reactions is challenging because C-C σ-bonds are typically unreactive. Exploiting the high ring-strain energy of polycyclic carbocycles is a common strategy to weaken and facilitate the reaction of C-C σ-bonds, but there are limited examples of highly strained C-C σ-bonds being used in difunctionalization reactions. We demonstrate that highly strained bicyclo[1.1.0]butyl boronate complexes (strain energy ca. 65 kcal/mol), which were prepared by reacting boronic esters with bicyclo[1.1.0]butyl lithium, react with electrophiles to achieve the diastereoselective difunctionalization of the strained central C-C σ-bond of the bicyclo[1.1.0]butyl unit. The reaction shows broad substrate scope, with a range of different electrophiles and boronic esters being successfully employed to form a diverse set of 1,1,3-trisubstituted cyclobutanes (>50 examples) with high diastereoselectivity. The high diastereoselectivity observed has been rationalized based on a combination of experimental data and DFT calculations, which suggests that separate concerted and stepwise reaction mechanisms are operating, depending upon the migrating substituent and electrophile used.

摘要

C-C σ 键的双官能化反应有可能简化难以制备的分子的合成途径。然而,由于 C-C σ 键通常不反应,因此开发这种反应具有挑战性。利用多环碳环的高环应变能是削弱和促进 C-C σ 键反应的常见策略,但在双官能化反应中使用高度应变的 C-C σ 键的例子有限。我们证明了高度应变的双环[1.1.0]丁基硼酸酯配合物(应变能约为 65 kcal/mol),通过与双环[1.1.0]丁基锂反应制备,可以与亲电试剂反应,实现双环[1.1.0]丁基单元的应变中心 C-C σ 键的立体选择性双官能化。该反应具有广泛的底物范围,可成功使用多种不同的亲电试剂和硼酸酯,形成一系列具有高立体选择性的 1,1,3-三取代环丁烷 (>50 个例子)。观察到的高立体选择性可以根据实验数据和 DFT 计算的组合进行合理化,这表明根据所使用的迁移取代基和亲电试剂,存在单独的协同和逐步反应机制。

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