Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Krakow, Poland.
Chem Soc Rev. 2014 Jan 21;43(2):577-87. doi: 10.1039/c3cs60202h.
Asymmetric reactions in water and in aqueous solutions have become an area of fast growing interest recently. Although for a long time neglected as a medium for organic reactions, water has attracted attention as the most widely distributed solvent in the world. Indeed, water is the solvent used by nature for biological chemistry including aldol reactions being essential for glycolysis, gluconeogenesis and related processes. Consequently, artificial catalysts designed and used for aldol reactions in water can be promising for the synthesis of enantiopure molecules and are also important for the understanding of complex chemistry of life. This tutorial review summarizes recent developments in the area of aqueous asymmetric aldol reactions highlighting two fundamental directions--development of water compatible chiral Lewis acids and amine-based organocatalysts.
近年来,水相及水溶剂中的不对称反应已成为一个快速发展的研究领域。尽管很长一段时间以来,水作为有机反应的介质都被忽视了,但它作为世界上分布最广泛的溶剂,已经引起了人们的关注。事实上,水是自然界用于生物化学的溶剂,包括醛醇缩合反应,这对糖酵解、糖异生和相关过程至关重要。因此,设计并用于水相醛醇缩合反应的人工催化剂有望用于手性纯分子的合成,对于理解生命的复杂化学也很重要。本综述总结了水相不对称醛醇缩合反应领域的最新进展,突出了两个基本方向——开发水相兼容的手性路易斯酸和基于胺的有机催化剂。