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通过光电化学途径实现铜催化未活化烃的C(sp)-H胺化和醚化反应。

Copper-catalyzed C(sp)-H amination and etherification of unactivated hydrocarbons via photoelectrochemical pathway.

作者信息

Yin Jiawen, Shi Chengcheng, Hu Ao-Men, Luo Mengqi, Yang Chao, Guo Lin, Xia Wujiong

机构信息

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

School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, China.

出版信息

Nat Commun. 2025 Jun 2;16(1):5123. doi: 10.1038/s41467-025-60429-6.

Abstract

C(sp)-H activation and functionalization of unactivated hydrocarbons has provided enormous opportunities for the construction of diverse organic molecules, which facilitates the structural modification of pharmaceutical molecules. To achieve this goal, the direct hydrogen atom transfer (HAT) via radical pathway has become an attractive strategy. Taking the advantage of photo/electrochemistry, we herein describe oxidative C(sp)-H amination and etherification reactions via a photoelectrochemical pathway, which could directly transform easily available hydrocarbons into N-heterocycle and ether products under mild conditions. Applying 9-phenylacridine as a direct hydrogen atom transfer (d-HAT) reagent under 390 nm LED light irradiation and electrolysis, the scope of our method includes not only simple alkanes, but also a wide range of C(sp)-H molecules including ethers, thioethers, silanes, and amides. The reaction shows broad scope (>135 examples) and unconventional regioselectivity, with the occurrence of both C(sp)-H amination and etherification preferentially at the sterically unhindered positions. Furthermore, gram-scale experiments and relevant mechanistic investigations are carried out to illustrate the reaction mechanism.

摘要

未活化烃的C(sp)–H活化和官能团化反应为构建多样化有机分子提供了大量机会,这有助于药物分子的结构修饰。为实现这一目标,通过自由基途径的直接氢原子转移(HAT)已成为一种颇具吸引力的策略。利用光/电化学的优势,我们在此描述了通过光电化学途径进行的氧化C(sp)–H胺化和醚化反应,该反应能够在温和条件下将易于获得的烃类直接转化为含氮杂环和醚类产物。在390 nm LED光照射和电解条件下,以9-苯基吖啶作为直接氢原子转移(d-HAT)试剂,我们方法的适用范围不仅包括简单烷烃,还涵盖了多种C(sp)–H分子,如醚、硫醚、硅烷和酰胺。该反应具有广泛的适用范围(>135个实例)和非常规的区域选择性,C(sp)–H胺化和醚化反应均优先发生在空间位阻较小的位置。此外,还进行了克级规模实验和相关机理研究以阐明反应机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46c9/12130285/ec68b3d388fd/41467_2025_60429_Fig1_HTML.jpg

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