Department of Chemistry, University of California , One Shields Avenue, Davis, California 95616, United States.
J Org Chem. 2016 Aug 5;81(15):6211-22. doi: 10.1021/acs.joc.6b00541. Epub 2016 Jul 11.
New methodology has been developed for the Lewis acid catalyzed synthesis of malonamides. First, the scandium(III)-catalyzed addition of diverse nucleophiles (e.g., indoles, N,N-dimethyl-m-anisidine, 2-ethylpyrrole, and 2-methylallylsilane) to coumarin-3-carboxylates has been developed to afford chromanone-3-carboxylates in high yields as a single diastereomer. Upon investigating a subsequent lanthanum(III)-catalyzed amidation reaction, a new multicomponent reaction was designed by bringing together coumarin-3-carboxylates with indoles and amines to afford indolylmalonamides, which were identified to exhibit fluorescent properties. The photophysical properties for selected compounds have been analyzed, including quantum yield, molar absorptivity, and Stokes shift. Synthetic studies of several reaction byproducts involved in the network of reaction equilibria for the three-component reaction provide mechanistic insight for the development of this methodology.
已经开发出一种新的方法,用于路易斯酸催化合成丙二酰胺。首先,开发了钪(III)催化的各种亲核试剂(如吲哚、N,N-二甲基间茴香胺、2-乙基吡咯和 2-甲基丙烯基硅烷)与香豆素-3-羧酸酯的加成反应,以高收率作为单一非对映异构体得到色酮-3-羧酸酯。在研究随后的镧(III)催化的酰胺化反应时,通过将香豆素-3-羧酸酯与吲哚和胺结合在一起,设计了一种新的多组分反应,得到吲哚基丙二酰胺,其被鉴定具有荧光性质。对选定化合物的光物理性质进行了分析,包括量子产率、摩尔吸光率和斯托克斯位移。对涉及三组分反应反应平衡网络的几个反应副产物的合成研究为该方法的发展提供了机理见解。