The State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China.
J Am Chem Soc. 2020 Jun 10;142(23):10557-10566. doi: 10.1021/jacs.0c04532. Epub 2020 May 28.
Catalytic asymmetric reactions in which water is a substrate are rare. Enantioselective transition-metal-catalyzed insertion of carbenes into the O-H bond of water can be used to incorporate water into the stereogenic center, but the reported chiral catalysts give good results only when α-aryl-α-diazoesters are used as the carbene precursors. Herein we report the first highly enantioselective O-H bond insertion reactions between water and α-alkyl- and α-alkenyl-α-diazoesters as carbene precursors, with catalysis by a combination of achiral dirhodium complexes and chiral phosphoric acids or chiral phosphoramides. Participation of the phosphoric acids or phosphoramides in the carbene transfer reaction markedly suppressed competing side reactions, such as β-H migration, carbene dimerization, and olefin isomerization, and thus ensured good yields of the desired products. Fine-tuning of the ester moiety facilitated enantiocontrol of the proton transfer reactions of the enol intermediates and resulted in excellent enantioselectivity. This protocol represents an efficient new method for preparation of multifunctionalized chiral α-alkyl and α-alkenyl hydroxyl esters, which readily undergo various transformations and can thus be used for the synthesis of bioactive compounds. Mechanistic studies revealed that the phosphoric acids and phosphoramides promoted highly enantioselective [1,2]- and [1,3]-proton transfer reactions of the enol intermediates. Maximization of molecular orbital overlap in the transition states of the proton transfer reactions was the original driving force to involve the proton shuttle catalysts in this process.
水作为底物的催化不对称反应较为少见。手性过渡金属催化的卡宾插入水的 O-H 键可以将水引入手性中心,但报道的手性催化剂仅在使用 α-芳基-α-重氮酯作为卡宾前体时才会得到较好的结果。本文报道了首例水与 α-烷基-和 α-烯基-α-重氮酯作为卡宾前体的高对映选择性 O-H 键插入反应,反应由非手性二钌配合物和手性磷酸或手性膦酰胺共同催化。磷酸或膦酰胺参与卡宾转移反应显著抑制了竞争副反应,如β-H 迁移、卡宾二聚和烯烃异构化,从而保证了所需产物的良好收率。酯基的精细调控促进了烯醇中间体质子转移反应的对映体控制,从而获得了优异的对映选择性。该方案代表了一种制备多功能手性 α-烷基和 α-烯基羟基酯的有效新方法,这些酯易于进行各种转化,因此可用于合成生物活性化合物。机理研究表明,磷酸和膦酰胺促进了烯醇中间体的高度对映选择性[1,2]-和[1,3]-质子转移反应。质子转移反应过渡态中分子轨道重叠的最大化是该过程涉及质子穿梭催化剂的原始驱动力。