Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470, Mülheim an der Ruhr, Germany.
Angew Chem Int Ed Engl. 2016 May 10;55(20):6099-102. doi: 10.1002/anie.201601545. Epub 2016 Apr 13.
Quaternary stereocenters are found in numerous bioactive molecules. The Tsuji-Trost reaction has proven to be a powerful C-C bond forming process, and, at least in principle, should be well suited to access quaternary stereocenters via the α-allylation of ketones. However, while indirect approaches are known, the direct, catalytic asymmetric α-allylation of branched ketones has been elusive until today. By combining "enol catalysis" with the use of CO2 as a formal catalyst for asymmetric catalysis, we have now developed a solution to this problem: we report a direct, highly enantioselective and highly atom-economic Tsuji-Trost allylation of branched ketones with allylic alcohol. Our reaction delivers products bearing quaternary stereocenters with high enantioselectivity and water as the sole by-product. We expect our methodology to be of utility in asymmetric catalysis and inspire the design of other highly atom-economic transformations.
季碳立体中心存在于许多具有生物活性的分子中。Tsuji-Trost 反应已被证明是一种强大的 C-C 键形成过程,至少原则上,通过酮的α-烯丙基化反应应该很容易获得季碳立体中心。然而,虽然已知间接方法,但直接的、催化不对称的支链酮的α-烯丙基化反应直到今天仍然难以实现。通过将“烯醇催化”与 CO2 用作不对称催化的形式催化剂结合使用,我们现在已经解决了这个问题:我们报告了一种直接、高对映选择性和高原子经济性的 Tsuji-Trost 烯丙基化反应,用于支链酮与烯丙醇的反应。我们的反应以高对映选择性和水为唯一副产物得到了带有季碳立体中心的产物。我们预计我们的方法将在不对称催化中具有实用性,并激发其他高原子经济性转化的设计。