Race Nicholas J, Hazelden Ian R, Faulkner Adele, Bower John F
School of Chemistry , University of Bristol , Bristol , BS8 1TS , UK . Email:
Chem Sci. 2017 Aug 1;8(8):5248-5260. doi: 10.1039/c7sc01480e. Epub 2017 Jun 20.
Aza-Heck cyclizations are an emerging method for the construction of chiral N-heterocyclic systems. In these processes, an activated N-O bond replaces the C-X bond (X = halide, OTf) used in conventional Heck reactions, with the associated aza-Pd(ii)-intermediate engaging pendant alkenes in a Heck-like manner. This perspective article commences with an historical overview of the area, which stems from Narasaka's seminal studies using oxime esters as the initiating motif. The scope and mechanism of associated chiral N-heterocyclic methodologies are then outlined, including cascade processes that enable diverse alkene 1,2-carboaminations. The recent emergence of new N-O donors and the realization of highly enantioselective aza-Heck cyclizations are then discussed. Collectively, these studies suggest that the aza-Heck approach can underpin a broad family of redox-neutral and enantioselective C-N bond forming processes.
氮杂-Heck环化反应是构建手性氮杂环体系的一种新兴方法。在这些反应过程中,一个活化的N-O键取代了传统Heck反应中使用的C-X键(X = 卤化物、OTf),相关的氮杂-Pd(II)中间体以类似Heck反应的方式与侧链烯烃发生反应。这篇综述文章首先对该领域进行了历史概述,其起源于奈良坂以肟酯为起始基元的开创性研究。接着概述了相关手性氮杂环方法的范围和机理,包括能够实现多种烯烃1,2-碳胺化反应的串联过程。随后讨论了新型N-O供体的最新出现以及高对映选择性氮杂-Heck环化反应的实现。总的来说,这些研究表明氮杂-Heck方法可以为一大类氧化还原中性和对映选择性C-N键形成过程提供基础。