School of Chemistry and Chemical Engineering, South China University of Technology http://www2.scut.edu.cn/ce/lshxyjzx/links.html.
Angew Chem Int Ed Engl. 2014 Apr 14;53(16):4205-8. doi: 10.1002/anie.201311217. Epub 2014 Feb 20.
Sulfone derivatives are important synthetic intermediates. However, the general method for their preparation is through traditional coupling reaction: the alkylation of sodium sulfinates with phenacyl halides. Based on our previous work on sodium sulfinates and oxime acetates, we herein report a novel method for sulfone derivatives by oxidative coupling with sodium sulfinates and oxime acetates using copper as catalyst. The sulfonylvinylamine products could be formed in excellent yields. Upon hydrolysis by silica gel in CH2 Cl2 , β-ketosulfones could also be efficiently constructed. Various sulfonylvinylamines and β-ketosulfones were obtained in good to excellent yields under the optimized reaction conditions. Mechanistic studies indicated that this transformation involved copper-catalyzed N-O bond cleavage, activation of a vinyl sp(2) C-H bond, and C-S bond formation. The oxime acetates act as both a substrate and an oxidant, thus the reaction needs no additional oxidants or additives.
砜衍生物是重要的合成中间体。然而,其一般的制备方法是通过传统的偶联反应:苯乙酮卤化物与亚磺酸钠的烷基化。基于我们之前对亚磺酸钠和肟乙酸盐的研究,我们在此报告了一种使用铜作为催化剂通过亚磺酸钠和肟乙酸盐的氧化偶联来制备砜衍生物的新方法。磺酰基乙烯基胺产物可以以优异的收率形成。通过硅胶在 CH2 Cl2 中的水解,也可以有效地构建β-酮砜。在优化的反应条件下,各种磺酰基乙烯基胺和β-酮砜以良好至优异的收率得到。机理研究表明,这种转化涉及铜催化的 N-O 键断裂、乙烯基 sp(2) C-H 键的活化以及 C-S 键的形成。肟乙酸盐既作为底物又作为氧化剂,因此反应不需要额外的氧化剂或添加剂。