Laboratory of Growth Regulators, Institute of Experimental Botany of the Czech Academy of Sciences, and Faculty of Science, Palacky University, Šlechtitelů 27, Olomouc CZ-78371, Czech Republic.
Department of Chemical Biology, Faculty of Science, Palacky University, Šlechtitelů 27, Olomouc CZ-78371, Czech Republic.
Org Biomol Chem. 2022 Apr 13;20(15):3154-3159. doi: 10.1039/d2ob00345g.
Heteroaryl sulfonamides are important structural motifs in the medicinal and agrochemical industries. However, their synthesis often relies on the use of heteroaryl sulfonyl chlorides, which are unstable and toxic reagents. Herein, we report a protocol that allows direct oxidative coupling of heteroaryl thiols and primary amines, readily available and inexpensive commodity chemicals. The transformation proceeds under mild reaction conditions and yields the desired -alkylated sulfonamides in good yields. -alkyl heteroaryl sulfonamides can be further transformed using a microwave-promoted Fukuyama-Mitsunobu reaction to ,-dialkyl heteroaryl sulfonamides. The developed protocols thus enable the preparation of previously difficult to prepare sulfonamides (toxic reagents, harsh conditions, and low yields) under mild conditions.
杂芳基磺酰胺是医药和农用化学品工业中的重要结构基序。然而,它们的合成通常依赖于使用杂芳基磺酰氯,这是不稳定和有毒的试剂。在此,我们报告了一种方案,允许杂芳基硫醇和伯胺直接氧化偶联,这些是容易获得且廉价的商品化学品。该转化在温和的反应条件下进行,并以良好的收率得到所需的 - 烷基化磺酰胺。- 烷基杂芳基磺酰胺可以进一步使用微波促进的 Fukuyama-Mitsunobu 反应转化为,- 二烷基杂芳基磺酰胺。因此,所开发的方案使得在温和条件下能够制备以前难以制备的磺酰胺(有毒试剂、苛刻条件和低收率)。