Zhang Zhenxing, Zhang Lei, Zhang Xianhao, Yang Jianxin, Yin Yunxing, Jiang Yangye, Zeng Chengchu, Lu Gang, Yang Yang, Mo Fanyang
Department of Energy and Resources Engineering, College of Engineering, Peking University Beijing 100871 China
College of Chemistry and Chemical Engineering, Anyang Normal University Anyang 455000 China.
Chem Sci. 2020 Sep 28;11(44):12021-12028. doi: 10.1039/d0sc02386h.
We report a set of electrochemically regulated protocols for the divergent synthesis of ketones and β-keto esters from the same β-hydroxycarboxylic acid starting materials. Enabled by electrochemical control, the anodic oxidation of carboxylic acids proceeded in either a one-electron or a two-electron pathway, leading to a 1,4-aryl transfer or a semipinacol-type 1,2-group transfer product with excellent chemoselectivity. The 1,4-aryl transfer represents an unprecedented example of carbon-to-oxygen group transfer proceeding a radical mechanism. In contrast to previously reported radical group transfer reactions, this 1,4-group transfer process features the migration of electron-rich aryl substituents. Furthermore, with these chemoselective electrochemical oxidation protocols, a range of ketones and β-keto esters including those possessing a challenging-to-access medium-sized ring could be synthesized in excellent yields.
我们报道了一组电化学调控的方法,可从相同的β-羟基羧酸起始原料出发,实现酮类和β-酮酯的发散性合成。在电化学控制下,羧酸的阳极氧化可通过单电子或双电子途径进行,以优异的化学选择性生成1,4-芳基转移产物或半频哪醇型1,2-基团转移产物。1,4-芳基转移代表了一种前所未有的通过自由基机制进行的碳到氧基团转移的例子。与先前报道的自由基基团转移反应不同,这种1,4-基团转移过程的特点是富电子芳基取代基的迁移。此外,通过这些化学选择性电化学氧化方法,可以以优异的产率合成一系列酮类和β-酮酯,包括那些具有难以合成的中等大小环的化合物。