Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, 510640, Guangzhou, China.
School of Materials Science and Engineering, PCFM Lab, Sun Yat-sen University, 510275, Guangzhou, China.
Nat Commun. 2019 Feb 19;10(1):833. doi: 10.1038/s41467-019-08762-5.
Incorporation of nitrile groups into fine chemicals is of particular interest through C(sp)-H bonds activation of alkyl nitriles in the synthetic chemistry due to the highly efficient atom economy. However, the direct α-functionalization of alkyl nitriles is usually limited to its enolate chemistry. Here we report an electro-oxidative C(sp)-H bond functionalization of acetonitrile with aromatic/aliphatic mercaptans for the synthesis of sulfur-containing β-enaminonitrile derivatives. These tetrasubstituted olefin products are stereoselectively synthesized and the stereoselectivity is enhanced in the presence of a phosphine oxide catalyst. With iodide as a redox catalyst, activation of C(sp)-H bond to produce cyanomethyl radicals proceeds smoothly at a decreased anodic potential, and thus highly chemoselective formation of C-S bonds and enamines is achieved. Importantly, the process is carried out at ambient temperature and can be easily scaled up.
通过 C(sp)-H 键活化烷基腈中的氰基,在合成化学中,将腈基引入精细化学品中具有特别的意义,因为这种方法具有高效的原子经济性。然而,由于烷基腈的直接α-官能化通常仅限于其烯醇化物化学。在这里,我们报道了一种电氧化 C(sp)-H 键官能化的乙腈与芳香族/脂肪族硫醇的方法,用于合成含硫β-烯胺腈衍生物。这些四取代烯烃产物是立体选择性合成的,并且在膦氧化物催化剂的存在下,立体选择性增强。在碘化物作为氧化还原催化剂的情况下,C(sp)-H 键的活化可以在降低的阳极电势下顺利进行,从而可以高化学选择性地形成 C-S 键和烯胺。重要的是,该过程在环境温度下进行,并且可以很容易地放大。