Azizi Kobra, Madsen Robert
Department of Chemistry, Technical University of Denmark 2800 Kgs. Lyngby Denmark
Chem Sci. 2020 Jun 25;11(30):7800-7806. doi: 10.1039/d0sc02948c.
A new radical condensation reaction is developed where benzylic alcohols and acetamides are coupled to generate 3-arylpropanamides with water as the only byproduct. The transformation is performed with potassium -butoxide as the only additive and gives rise to a variety of 3-arylpropanamides in good yields. The mechanism has been investigated experimentally with labelled substrates, trapping experiments and spectroscopic measurements. The findings indicate a radical pathway where potassium -butoxide is believed to serve a dual role as both base and radical initiator. The radical anion of the benzylic alcohol is proposed as the key intermediate, which undergoes coupling with the enolate of the amide to form the new C-C bond. Subsequent elimination to the corresponding cinnamamide and olefin reduction then affords the 3-arylpropanamides.
开发了一种新的自由基缩合反应,其中苄醇和乙酰胺偶联生成3-芳基丙酰胺,水是唯一的副产物。该转化反应以叔丁醇钾作为唯一添加剂进行,能以良好的产率得到多种3-芳基丙酰胺。通过标记底物、捕获实验和光谱测量对反应机理进行了实验研究。研究结果表明该反应是自由基途径,叔丁醇钾被认为兼具碱和自由基引发剂的双重作用。苄醇的自由基阴离子被认为是关键中间体,它与酰胺的烯醇盐发生偶联形成新的C-C键。随后消除生成相应的肉桂酰胺并还原烯烃,从而得到3-芳基丙酰胺。