Liang Yumeng, Taya Akihito, Zhao Zhengyu, Saito Norimichi, Shibata Norio
Department of Nanopharmaceutical Sciences, Nagoya Institute of Technology, Gokiso, Showa-ku, Nagoya 466-5888, Japan.
Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Gokiso, Showa-ku, Nagoya 466-5888, Japan.
Beilstein J Org Chem. 2020 Dec 14;16:3052-3058. doi: 10.3762/bjoc.16.254. eCollection 2020.
A new protocol enabling the formation of trifluoromethyl compounds from acyl fluorides has been developed. The combination of FLUOLEAD and Olah's reagent in solvent-free conditions at 70 °C initiated the significant deoxyfluorination of the acyl fluorides and resulted in the corresponding trifluoromethyl products with high yields (up to 99%). This strategy showed a great tolerance for various acyl fluorides containing aryloyl, (heteroaryl)oyl, or aliphatic acyl moieties, providing good to excellent yields of the trifluoromethyl products. Synthetic drug-like molecules were also transformed into the corresponding trifluoromethyl compounds under the same reaction conditions. A reaction mechanism is proposed.
一种能够由酰氟形成三氟甲基化合物的新方案已被开发出来。在无溶剂条件下于70℃将氟铅试剂和奥拉试剂组合,引发了酰氟显著的脱氧氟化反应,并以高产率(高达99%)得到相应的三氟甲基产物。该策略对含有芳酰基、(杂芳基)酰基或脂肪酰基部分的各种酰氟具有很大的耐受性,能提供良好至优异产率的三氟甲基产物。在相同反应条件下,类药物合成分子也能转化为相应的三氟甲基化合物。本文提出了一种反应机理。