Bera Kalisankar, Namboothiri Irishi N N
Department of Chemistry, Indian Institute of Technology Bombay , Mumbai 400 076, India.
J Org Chem. 2015 Feb 6;80(3):1402-13. doi: 10.1021/jo502332r. Epub 2015 Jan 23.
Conjugate addition of α-nitrophosphonates to enones was carried out in the presence of two sets of organocatalysts, viz. a quinine-thiourea and a quinine-squaramide. The quinine-thiourea provided the products possessing an α-quaternary chiral center in high enantioselectivities only in the case of electron rich enones. On the other hand, the quinine-squaramide was more efficient in that a wide variety of electron rich and electron poor enones underwent Michael addition of nitrophosphonates to afford the quaternary α-nitrophosphonates in excellent yields and enantioselectivities. The hydrogen bonding donor ability of the bifunctional catalyst, as shown in the proposed transition states, appears primarily responsible for the observed selectivity. However, a favorable π-stacking between the aryl groups of thiourea/squaramide and aryl vinyl ketone also appeared favorable. The reaction was amenable to scale up, and the enantioenriched quaternary α-nitrophosphonates could be easily transformed to synthetically and biologically useful quaternary α-aminophosphonates and other multifunctional molecules.
在两组有机催化剂(即奎宁 - 硫脲和奎宁 - 方酰胺)存在的情况下,进行了α-硝基膦酸酯与烯酮的共轭加成反应。奎宁 - 硫脲仅在富电子烯酮的情况下,以高对映选择性提供具有α-季碳手性中心的产物。另一方面,奎宁 - 方酰胺更有效,因为各种各样的富电子和缺电子烯酮都能进行硝基膦酸酯的迈克尔加成反应,以优异的产率和对映选择性得到季碳α-硝基膦酸酯。如所提出的过渡态所示,双功能催化剂的氢键供体能力似乎是观察到的选择性的主要原因。然而,硫脲/方酰胺的芳基与芳基乙烯基酮之间有利的π-堆积也似乎是有利的。该反应适合放大规模,对映体富集的季碳α-硝基膦酸酯可以很容易地转化为具有合成和生物学用途的季碳α-氨基膦酸酯和其他多功能分子。