College of Pharmacy, Seoul National University, Seoul 151-742, Korea.
Chem Commun (Camb). 2009 Dec 14(46):7090-103. doi: 10.1039/b914028j. Epub 2009 Oct 7.
Phase-transfer catalysis is one of the most useful methodologies for practical syntheses given its operational simplicity and mild reaction conditions that enable its application in industrial processes. Cinchona alkaloids have been a popular, natural source of practical organocatalysts due largely to their excellent commercial availability and low cost. Since the first Cinchona alkaloid-derived phase-transfer catalysts was disclosed in 1981, diverse generations of Cinchona-derived phase-transfer catalysts have been developed and successfully applied to various asymmetric syntheses. In this feature article, we describe the generation of Cinchona-derived chiral phase-transfer catalysts according to the development stages and our efforts toward the design of polymeric Cinchona phase-transfer catalysts, the effects of the electronic functional group incorporated in the catalysts, and their application in asymmetric organic reactions.
相转移催化是一种非常有用的方法学,因为其操作简单且反应条件温和,适用于工业过程。金鸡纳生物碱因其出色的商业可用性和低成本而成为实用有机催化剂的热门天然来源。自 1981 年首次披露金鸡纳生物碱衍生的相转移催化剂以来,已经开发出了多种代的金鸡纳衍生的相转移催化剂,并成功应用于各种不对称合成中。在这篇专题文章中,我们根据发展阶段描述了金鸡纳衍生的手性相转移催化剂的生成,以及我们在设计聚合物金鸡纳相转移催化剂方面的努力,催化剂中所包含的电子官能团的影响,以及它们在不对称有机反应中的应用。