Luo Jian, Davenport Michael T, Ess Daniel H, Liu T Leo
Department of Chemistry and Biochemistry, Utah State University, 0300 Old Main Hill, Logan, Utah, 84322, United States.
Department of Chemistry and Biochemistry, Brigham Young University, Provo, Utah, 84604, United States.
Angew Chem Int Ed Engl. 2024 Sep 16;63(38):e202407118. doi: 10.1002/anie.202407118. Epub 2024 Aug 13.
Cross-electrophile coupling (XEC) between aryl halides and alkyl halides is a streamlined approach for C(sp)-C(sp) bond construction, which is highly valuable in medicinal chemistry. Based on a key Ni aryl amido intermediate, we developed a highly selective and scalable Ni-catalyzed electrochemical XEC reaction between (hetero)aryl halides and primary and secondary alkyl halides. Experimental and computational mechanistic studies indicate that an amine secondary ligand slows down the oxidative addition process of the Ni-polypyridine catalyst to the aryl bromide and a Ni aryl amido intermediate is formed in situ during the reaction process. The relatively slow oxidative addition is beneficial for enhancing the selectivity of the XEC reaction. The Ni aryl amido intermediate stabilizes the Ni-aryl species to prevent the aryl-aryl homo-coupling side reactions and acts as a catalyst to activate the alkyl bromide substrates. This electrosynthesis system provides a facile, practical, and scalable platform for the formation of (hetero)aryl-alkyl bonds using standard Ni catalysts under mild conditions. The mechanistic insights from this work could serve as a great foundation for future studies on Ni-catalyzed cross-couplings.
芳基卤化物与烷基卤化物之间的交叉亲电偶联(XEC)是一种用于构建C(sp)-C(sp)键的简化方法,在药物化学中具有很高的价值。基于关键的镍芳基酰胺中间体,我们开发了一种高度选择性且可扩展的镍催化电化学XEC反应,用于(杂)芳基卤化物与伯烷基卤化物和仲烷基卤化物之间的反应。实验和计算机理研究表明,胺二级配体减缓了镍-多吡啶催化剂对芳基溴的氧化加成过程,并且在反应过程中原位形成了镍芳基酰胺中间体。相对较慢的氧化加成有利于提高XEC反应的选择性。镍芳基酰胺中间体使镍-芳基物种稳定,防止芳基-芳基均偶联副反应,并作为催化剂活化烷基溴底物。该电合成系统为在温和条件下使用标准镍催化剂形成(杂)芳基-烷基键提供了一个简便、实用且可扩展的平台。这项工作的机理见解可为未来镍催化交叉偶联的研究奠定良好基础。