Das Siuli, Sinha Suman, Samanta Deepannita, Mondal Rakesh, Chakraborty Gargi, Brandaõ Paula, Paul Nanda D
Department of Chemistry , Indian Institute of Engineering Science and Technology , Shibpur, Botanic Garden, Howrah 711103 , West Bengal , India.
Departamento de Química, CICECO-Instituto de Materiais de Aveiro , Universidade de Aveiro , 3810-193 Aveiro , Portugal.
J Org Chem. 2019 Aug 16;84(16):10160-10171. doi: 10.1021/acs.joc.9b01343. Epub 2019 Aug 2.
A simple metal-ligand cooperative approach for the dehydrogenative functionalization of alcohols to various substituted quinolines and quinazolin-4(3)-ones under relatively mild reaction conditions (≤90 °C) is reported. Simple and easy-to-prepare air-stable Cu(II) complexes featuring redox-active azo-aromatic scaffolds, 2-arylazo-(1,10-phenanthroline) (), are used as catalyst. A wide variety of substituted quinolines and quinazolin-4(3)-ones were synthesized in moderate to good isolated yields via dehydrogenative coupling reactions of various inexpensive and easily available starting materials under aerobic conditions. A few control experiments and deuterium labeling studies were carried out to understand the mechanism of the dehydrogenative coupling reactions, which indicate that both copper and the coordinated azo-aromatic ligand participate in a cooperative manner during the catalytic cycle.
报道了一种简单的金属-配体协同方法,可在相对温和的反应条件(≤90°C)下将醇脱氢官能化转化为各种取代喹啉和喹唑啉-4(3)-酮。具有氧化还原活性偶氮芳族骨架的简单且易于制备的空气稳定的Cu(II)配合物,即2-芳基偶氮-(1,10-菲咯啉),被用作催化剂。通过各种廉价且易于获得的起始原料在有氧条件下的脱氢偶联反应,以中等至良好的分离产率合成了多种取代喹啉和喹唑啉-4(3)-酮。进行了一些对照实验和氘标记研究以了解脱氢偶联反应的机理,结果表明铜和配位的偶氮芳族配体在催化循环中以协同方式参与反应。