Gualandi Andrea, Mengozzi Luca, Wilson Claire M, Cozzi Pier Giorgio
Chem Asian J. 2014 Apr;9(4):984-95. doi: 10.1002/asia.201301549.
In recent years there has been an accelerated rate of development in the field of organocatalysis, with asymmetric organocatalysis now reaching full maturity. The invention of new organocatalytic reactions and the exploration of new concepts now appear in tandem with the application of organocatalytic techniques in the synthesis of natural products and active pharmaceutical ingredients (APIs). After a "golden rush" in organocatalysis, researchers are now starting to combine different methods, thereby taking advantage of the significant benefits of synergy. Metals are used in combination with organocatalytic processes, thus reaching complexity that is found in nature, where enzymes take advantage of the presence of certain metals to increase the arsenal of organic transformations available. In this Focus review, we illustrate the possibility of a "happy marriage" between Lewis acids and organocatalytic stereoselective processes. Questions have been raised about the combination of Lewis acids and organocatalysis owing to the presence of water and/or strong bases in these processes. Some Lewis acids have been shown to be compatible with organocatalysis and concepts relating to their use will be illustrated herein. To summarize the fruitful use of Lewis acids in stereoselective organocatalytic processes, we will draw attention to the advantages and selectivity achieved using this method.
近年来,有机催化领域的发展速度加快,不对称有机催化现已完全成熟。新的有机催化反应的发明和新概念的探索如今与有机催化技术在天然产物和活性药物成分(API)合成中的应用同步出现。在经历了有机催化的“淘金热”之后,研究人员现在开始结合不同的方法,从而利用协同作用带来的显著优势。金属与有机催化过程相结合,从而达到自然界中存在的复杂性,在自然界中,酶利用某些金属的存在来增加可用的有机转化手段。在本聚焦综述中,我们阐述了路易斯酸与有机催化立体选择性过程之间“美好结合”的可能性。由于这些过程中存在水和/或强碱,人们对路易斯酸与有机催化的结合提出了疑问。一些路易斯酸已被证明与有机催化兼容,本文将阐述与其使用相关的概念。为总结路易斯酸在立体选择性有机催化过程中的丰硕应用,我们将关注使用该方法所实现的优势和选择性。