Shen Yuning, Mahjour Babak, Cernak Tim
Department of Medicinal Chemistry, University of Michigan, Ann Arbor, MI, 48109, USA.
Commun Chem. 2022 Jul 19;5(1):83. doi: 10.1038/s42004-022-00698-0.
Repurposing of amine and carboxylic acid building blocks provides an enormous opportunity to expand the accessible chemical space, because amine and acid feedstocks are typically low cost and available in high diversity. Herein, we report a copper-catalyzed deaminative esterification based on C-N activation of aryl amines via diazonium salt formation. The reaction was specifically designed to complement the popular amide coupling reaction. A chemoinformatic analysis of commercial building blocks demonstrates that by utilizing aryl amines, our method nearly doubles the available esterification chemical space compared to classic Fischer esterification with phenols. High-throughput experimentation in microliter reaction droplets was used to develop the reaction, along with classic scope studies, both of which demonstrated robust performance against hundreds of substrate pairs. Furthermore, we have demonstrated that this new esterification is suitable for late-stage diversification and for building-block repurposing to expand chemical space.
胺类和羧酸类结构单元的重新利用为扩展可及化学空间提供了巨大机遇,因为胺类和酸类原料通常成本低廉且种类繁多。在此,我们报道了一种基于芳基胺通过重氮盐形成进行C-N活化的铜催化脱氨基酯化反应。该反应经过专门设计,以补充常用的酰胺偶联反应。对市售结构单元的化学信息学分析表明,与经典的酚类费歇尔酯化反应相比,通过使用芳基胺,我们的方法可使可用的酯化化学空间增加近一倍。利用微升反应液滴进行高通量实验来开发该反应,并结合经典的底物范围研究,这两者均表明该反应对数百种底物对具有强大的性能。此外,我们已经证明这种新的酯化反应适用于后期多样化以及结构单元的重新利用以扩展化学空间。