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基于自由基的 C-N 键形成的最新进展:光/电化学方法。

Recent advances in radical-based C-N bond formation via photo-/electrochemistry.

机构信息

State Key Lab of Urban Water Resource and Environment, & School of Science, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.

出版信息

Chem Soc Rev. 2018 Apr 23;47(8):2591-2608. doi: 10.1039/c7cs00572e.

Abstract

The employment of nitrogen sources with free N-H bonds for amination is considered to be most straightforward and desirable, especially when the C-N bonds are prepared from N-H bonds and non-functionalized carbon sources, such as C-H bonds and C-C double/triple bonds, since this obviates the needs for the pre-installation of reactive groups in the starting materials and leads to a high atom and step economy. Recently, radical chemistry has been resuscitated owing to its great value in organic synthesis, and notable advances have been made in the direct use of N-H bonds for radical-based C-N bond formation with photo-/electrotechniques. Apart from the well-studied N-radical species addition pathway, radical-mediated aminations also proceed through N-atom nucleophilic addition, C-/N-radical cross-coupling, and a hydrogen-atom transfer (HAT) process. This review highlights the recent advances in this area with emphasis on the related reaction mechanisms.

摘要

具有游离 N-H 键的氮源的胺化反应被认为是最直接和理想的,特别是当 C-N 键是由 N-H 键和非官能化的碳源(如 C-H 键和 C-C 双键/三键)制备时,因为这避免了在起始原料中预先安装反应基团的需要,并导致高原子经济性和步骤经济性。最近,由于自由基化学在有机合成中的巨大价值,自由基化学得到了复苏,并且在利用光/电化学直接使用 N-H 键进行基于自由基的 C-N 键形成方面取得了显著进展。除了研究充分的 N-自由基加成途径外,自由基介导的胺化反应还可以通过 N-原子亲核加成、C-/N-自由基交叉偶联和氢原子转移(HAT)过程进行。本文重点介绍了该领域的最新进展,并强调了相关的反应机制。

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