Zhang Rui, Zhang Zhikun, Wang Kang, Wang Jianbo
Beijing National Laboratory of Molecular Sciences (BNLMS), Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry, Peking University, Beijing 100871, China.
J Org Chem. 2020 Aug 7;85(15):9791-9800. doi: 10.1021/acs.joc.0c01120. Epub 2020 Jul 15.
Ketenimines have been explored as useful building blocks for the synthesis of heteroatom-containing cyclic compounds through the cycloaddition with polar multiple bonds. Herein, we report the cycloaddition of difluoroketenimine with nonpolar multiple bonds, namely, the cycloaddition with alkenes or alkynes. The difluoroketenimine is generated from the coupling of -butyl isocyanide and difluorocarbene, which is formed in situ from (bromodifluoromethyl)trimethylsilane. The difluoroketenimine then reacts in situ with alkenes or alkynes to afford fluorinated pyrrolidines or pyrroles. DFT study suggests that a fluorinated cyclic (alkyl)(amino)carbene is involved as the key intermediate in these reactions.
酮亚胺已被探索作为通过与极性多重键进行环加成反应来合成含杂原子环状化合物的有用构建单元。在此,我们报道了二氟酮亚胺与非极性多重键的环加成反应,即与烯烃或炔烃的环加成反应。二氟酮亚胺由异丁腈与二氟卡宾偶联生成,二氟卡宾由(溴二氟甲基)三甲基硅烷原位生成。然后,二氟酮亚胺与烯烃或炔烃原位反应,得到氟化吡咯烷或吡咯。密度泛函理论研究表明,氟化环状(烷基)(氨基)卡宾作为这些反应的关键中间体参与其中。