Ji Wen-Jun, Han Wei, Ren Yuan-Yuan, Ma Mengtao, Shen Zhi-Liang, Chu Xue-Qiang
Technical Institute of Fluorochemistry, School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing, Jiangsu 211816, People's Republic of China.
Department of Chemistry and Materials Science, College of Science, Nanjing Forestry University, Nanjing, Jiangsu 210037, People's Republic of China.
Org Lett. 2024 Jul 26;26(29):6197-6202. doi: 10.1021/acs.orglett.4c02084. Epub 2024 Jul 14.
A silver-promoted three-component heterocyclization of alkynes, perfluoroalkyl halides, and 1,3-dinucleophiles was developed for the efficient synthesis of privileged ()-perfluoroalkenyl pyrroles. The reaction proceeded through a rationally designed sequence of radical perfluoroalkylation and intramolecular defluorinative [3 + 2]-heterocyclization. The utility of perfluoroalkyl halide as a perfluoroalkenyl reagent, by selective and controllable functionalization of two inert C(sp)-F bonds at vicinal carbon centers on the perfluoroalkyl chain, provides a new reaction mode for the synthesis of value-added organofluorides starting from the easily available and low-cost fluorinated feedstock.
开发了一种银促进的炔烃、全氟烷基卤化物和1,3-二亲核试剂的三组分杂环化反应,用于高效合成具有特权结构的()-全氟烯基吡咯。该反应通过合理设计的自由基全氟烷基化和分子内脱氟[3 + 2]杂环化序列进行。全氟烷基卤化物作为全氟烯基试剂的效用,通过对全氟烷基链上相邻碳中心的两个惰性C(sp)-F键进行选择性和可控官能化,为从易于获得且低成本的氟化原料合成增值有机氟化物提供了一种新的反应模式。