Zhang Jiayin, Liu Minghao, Zhang Wenyuan, Guo Chang
Hefei National Research Center for Physical Sciences at the Microscale and Department of Chemistry, University of Science and Technology of China, Hefei, 230026, China.
Sci Adv. 2025 Mar 21;11(12):eadu5594. doi: 10.1126/sciadv.adu5594. Epub 2025 Mar 19.
Highly functionalized structural motifs with extended chiral carbon chains are prevalent in a wide range of bioactive compounds and play critical roles in the production of various functionalized molecules. Here, we describe a nickel-catalyzed asymmetric radical-based electrochemical functionalization of silyl polyenolates at α-, γ-, ε-, and η-positions. Driven by electric current, this methodology provides a sustainable route to access enantioenriched dicarbonyls via vinylogous radical pathways. It demonstrates excellent functional groups tolerance, mild reaction conditions, broad substrate compatibility, formation of quaternary stereocenters at remote positions, and high levels of regio- and enantioselectivity (up to 98% enantiomeric excess). Mechanistic investigations indicate that ferrocene-based electron transfer mediators are pivotal in the anodic oxidation process, facilitating the generation of nickel-bound α-carbonyl radicals while suppressing the undesired oxidation of silyl polyenolates, thus guiding the selection of mediators for electrocatalytic systems. The versatility of catalytic asymmetric electrosynthesis is highlighted by the preparation of valuable enantioenriched building blocks and the total synthesis of (-)-ethosuximide.
具有延伸手性碳链的高度官能化结构基序在广泛的生物活性化合物中普遍存在,并在各种官能化分子的生产中发挥关键作用。在此,我们描述了一种镍催化的基于自由基的电化学方法,用于硅基多烯醇化物在α、γ、ε和η位的官能化。在电流驱动下,该方法通过烯丙基自由基途径提供了一条可持续的路线来获得对映体富集的二羰基化合物。它表现出优异的官能团耐受性、温和的反应条件、广泛的底物兼容性、在远程位置形成季碳立体中心以及高水平的区域和对映选择性(高达98%对映体过量)。机理研究表明,基于二茂铁的电子转移介质在阳极氧化过程中起关键作用,促进了镍结合的α-羰基自由基的生成,同时抑制了硅基多烯醇化物的不期望氧化,从而指导了电催化体系中介质的选择。催化不对称电合成的多功能性通过制备有价值的对映体富集结构单元和(-)-乙琥胺的全合成得到了突出体现。