Stratingh Institute for Chemistry, University of Groningen , Nijenborgh 4, 9747 AG Groningen, The Netherlands.
Institute for Molecules and Materials, Radboud University , Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
J Am Chem Soc. 2017 Oct 11;139(40):14224-14231. doi: 10.1021/jacs.7b07344. Epub 2017 Sep 29.
Here we report that readily available silyl- and boron-based Lewis acids in combination with chiral copper catalysts are able to overcome the reactivity issues of unactivated enamides, known as the least reactive carboxylic acid derivatives, toward alkylation with organomagnesium reagents. Allowing unequaled chemo-reactivity and stereocontrol in catalytic asymmetric conjugate addition to enamides, the method is distinguished by its unprecedented reaction scope, allowing even the most challenging and synthetically important methylations to be accomplished with good yields and excellent enantioselectivities. This catalytic protocol tolerates a broad temperature range (-78 °C to ambient) and scale up (10 g), while the chiral catalyst can be reused without affecting overall efficiency. Mechanistic studies revealed the fate of the Lewis acid in each elementary step of the copper-catalyzed conjugate addition of Grignard reagents to enamides, allowing us to identify the most likely catalytic cycle of the reaction.
在这里,我们报告说, readily available silyl- 和 boron-based Lewis acids 与手性铜催化剂结合,能够克服未活化的 enamides 的反应性问题, enamides 是已知的反应性最低的羧酸衍生物,能够与有机镁试剂进行烷基化反应。这种方法在催化不对称共轭加成到 enamides 中表现出无与伦比的化学反应性和立体控制能力,其反应范围前所未有,甚至可以完成最具挑战性和合成重要性的甲基化反应,产率高,对映选择性好。这种催化方案可以耐受较宽的温度范围(-78°C 至环境温度)和放大规模(10 g),而手性催化剂可以重复使用而不影响整体效率。机理研究揭示了 Lewis 酸在 Grignard 试剂与 enamides 的铜催化共轭加成的每个基本步骤中的命运,使我们能够确定反应最可能的催化循环。