Institut für Technische und Makromolekulare Chemie, RWTH Aachen University, Worringerweg 1, 520274 Aachen, Germany.
Chemistry. 2010 Jul 5;16(25):7517-26. doi: 10.1002/chem.201000063.
New derivatives of the Quinaphos ligands and the related Dihydro-Quinaphos ligands based on the more flexible 1,2,3,4-tetrahydroquinoline backbone have been prepared and fully characterised. A general and straightforward separation protocol was devised, which allowed for the gram-scale isolation of the R(a),S(c) and S(a),R(c) diastereomers. These new phosphine-phosphoramidite ligands have been applied in the Rh-catalysed asymmetric hydrogenation of functionalised olefins with the achievement of excellent enantioselectivities (> or = 99%) in most cases and turnover frequency (TOF) values of up to > or = 20,000 h(-1). These results substantiate the practical utility of readily accessible Quinaphos-type ligands, which belong to the most active and selective category of ligands for Rh-catalysed hydrogenation known to date.
新型 Quinaphos 配体及其相关的 Dihydro-Quinaphos 配体衍生物已基于更灵活的 1,2,3,4-四氢喹啉骨架进行了制备和全面表征。设计了一种通用且直接的分离方案,允许克级分离 R(a),S(c) 和 S(a),R(c) 非对映异构体。这些新型膦-磷酰胺配体已应用于功能化烯烃的 Rh 催化不对称氢化反应中,在大多数情况下获得了优异的对映选择性(>或=99%)和高达>或=20,000 h(-1)的周转频率(TOF)值。这些结果证实了易于获得的 Quinaphos 型配体的实际效用,这些配体属于迄今为止已知的 Rh 催化氢化中最活跃和选择性最高的配体类别。