Kumar Gadde Sathish, Peshkov Anatoly, Brzozowska Aleksandra, Nikolaienko Pavlo, Zhu Chen, Rueping Magnus
KAUST Catalysis Center (KCC), King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
Angew Chem Int Ed Engl. 2020 Apr 16;59(16):6513-6519. doi: 10.1002/anie.201915418. Epub 2020 Mar 5.
The first electrochemical approach for nickel-catalyzed cross-electrophile coupling was developed. This method provides a novel route to 1,1-diarylalkane derivatives from simple and readily available alkyl and aryl halides in good yields and excellent regioselectivity under mild conditions. The procedure shows good tolerance for a broad variety of functional groups and both primary and secondary alkyl halides can be used. Furthermore, the reaction was successfully scaled up to the multigram scale, thus indicating potential for industrial application. Mechanistic investigation suggested the formation of a nickel hydride in the electroreductive chain-walking arylation, which led to the development of a new nickel-catalyzed hydroarylation of styrenes to provide a series of 1,1-diaryl alkanes in good yields under mild reaction conditions.
开发了第一种用于镍催化交叉亲电偶联的电化学方法。该方法提供了一条从简单易得的烷基和芳基卤化物制备1,1-二芳基烷烃衍生物的新途径,在温和条件下产率良好且区域选择性优异。该方法对多种官能团具有良好的耐受性,伯卤代烃和仲卤代烃均可使用。此外,该反应成功放大至数克规模,表明具有工业应用潜力。机理研究表明,在电还原链行走芳基化过程中形成了氢化镍,这促使开发了一种新的镍催化苯乙烯氢芳基化反应,可在温和反应条件下以良好产率提供一系列1,1-二芳基烷烃。