Zhang Yuting, Sun Lu, Xu Zhilong, Tan Tian, Wang Zhiqian
College of Chemistry, Beijing University of Chemical Technology, Beijing 100029, China.
Guangzhou Laboratory, Guangzhou Medical University, Guangzhou 511436, China.
Org Lett. 2024 Jul 26;26(29):6164-6168. doi: 10.1021/acs.orglett.4c01995. Epub 2024 Jul 17.
Friedel-Crafts acylation is usually promoted by Lewis acids or Brønsted acids. In this work, a novel acylation of arenes with a highly electrophilic acylphosphonium salt was developed. The alkylation of the phosphorus atom in acylphosphines generated a neutral trivalent phosphine as a good leaving group and triggered the high electrophilicity of the acylphosphonium salt. Using acylphosphonium salts, 38 examples of acylations of arenes, alcohols, phenol, amines, thioalcohols, and even polystyrene were achieved. The acylation of arenes was monitored by P nuclear magnetic resonance and disclosed the existence of an acylphosphonium intermediate. The electrophilic capability of the acylphosphonium salt was ranked by the following series of controlled reactions: AcPR ≈ AcOTf > AcI > AcCl.
傅克酰基化反应通常由路易斯酸或布朗斯特酸促进。在这项工作中,开发了一种用高亲电酰基鏻盐对芳烃进行的新型酰化反应。酰基膦中磷原子的烷基化产生了一种中性三价膦作为良好的离去基团,并引发了酰基鏻盐的高亲电性。使用酰基鏻盐,实现了38例芳烃、醇、酚、胺、硫醇甚至聚苯乙烯的酰化反应。通过磷核磁共振监测芳烃的酰化反应,并揭示了酰基鏻中间体的存在。通过以下一系列对照反应对酰基鏻盐的亲电能力进行了排序:AcPR≈AcOTf>AcI>AcCl。