School of Chemistry, Chemical Engineering and Life Science, Wuhan University of Technology, 205 Luoshi Road, Wuhan 430070, China.
School of Life Science, Wuchang University of Technology, Wuhan 430223, P. R. China.
J Org Chem. 2020 Nov 6;85(21):13721-13734. doi: 10.1021/acs.joc.0c01877. Epub 2020 Oct 11.
A pyrrolidine-mediated Knoevenagel-type reaction for highly stereoselective construction of novel α-halo-1,3-dienylsulfonyl fluorides was achieved in up to 100% -selectivity and high yields at room temperature from condensation of the readily available aldehydes and halomethanesulfonyl fluorides. This protocol provided a class of unique α-halo-1,3-dienylsulfonyl fluorides with wide scope and excellent functional group compatibility. The α-halo-1,3-dienylsulfonyl fluorides were used as versatile building blocks in sulfur fluoride exchange click chemistry, Suzuki reaction, and Sonogashira reaction for the assembly of highly functionalized dienyl sulfonyl fluoride derivatives to be applied as covalent warheads for the discovery of new drugs.
吡咯烷介导的 Knoevenagel 型反应可在室温下从易得的醛和卤代甲磺酰氟的缩合反应中以高达 100%的选择性和高收率,高立体选择性地构建新型的α-卤代-1,3-二烯基磺酰氟。该方案提供了一类具有广泛范围和优异官能团兼容性的独特的α-卤代-1,3-二烯基磺酰氟。α-卤代-1,3-二烯基磺酰氟可用作多功能构建块,用于硫氟交换点击化学、Suzuki 反应和 Sonogashira 反应中,以组装高度官能化的二烯基磺酰氟衍生物,作为用于发现新药的共价弹头。