Lan Xing-Wang, Wang Nai-Xing, Bai Cui-Bing, Zhang Wei, Xing Yalan, Wen Jia-Long, Wang Yan-Jing, Li Yi-He
Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Department of Chemistry, William Paterson University of New Jersey, 300 Pompton Road, Wayne, New Jersey 07470, United States.
Sci Rep. 2015 Dec 18;5:18391. doi: 10.1038/srep18391.
A novel and convenient copper (II) bromide and 1,8-diazabicyclo[5.4.1]undec-7-ene (DBU) or 1,10-phenanthroline catalysis protocol for the construction of α-alkyl-β-keto sulfones via C(sp(3))-H bond functionalization followed by C(sp(3))-S bond formation between aryl ketones and sodium sulfinates at room temperature has been developed. This method is applicable to a wide range of aryl ketones and sodium sulfinates. The electronic effects of aryl ketones and ligands effects of the copper salts are crucial for this transformation. Typically, substituted aryl ketones with electron-withdrawing group do not need any ligand to give a good to excellent yield, while substituted aryl ketones with electron-donating group and electron-rich heteroaromatic ketones offer a good to excellent yield only under the nitrogen-based ligands. The practical value of this transformation highlights the efficient and robust one-pot synthesis of α-alkyl-β-keto sulfones.
已开发出一种新颖且便捷的催化方案,即通过溴化铜(II)与1,8 - 二氮杂双环[5.4.1]十一碳 - 7 - 烯(DBU)或1,10 - 菲咯啉催化,在室温下经过C(sp(3))-H键官能化,随后在芳基酮与亚磺酸钠之间形成C(sp(3))-S键,构建α-烷基-β-酮砜。该方法适用于多种芳基酮和亚磺酸钠。芳基酮的电子效应以及铜盐的配体效应对于这种转化至关重要。通常,带有吸电子基团的取代芳基酮无需任何配体就能获得良好至优异的产率,而带有供电子基团的取代芳基酮和富电子杂芳族酮仅在含氮配体存在下才能提供良好至优异的产率。这种转化的实用价值突出了α-烷基-β-酮砜高效且稳健的一锅法合成。