Sperga Arturs, Kinens Artis, Veliks Janis
Latvian Institute of Organic Synthesis, Aizkraukles iela 21, LV-1006 Riga, Latvia.
Faculty of Natural Sciences and Technology, Riga Technical University, P. Valdena Strasse 3, LV-1048 Riga, Latvia.
Org Lett. 2025 May 30;27(21):5446-5451. doi: 10.1021/acs.orglett.5c01416. Epub 2025 May 19.
The synthesis of organofluorine compounds is pivotal in developing innovative pharmaceuticals, materials, and agrochemicals. Fluorinated carbene transfer offers a promising strategy for forming new carbon-carbon and carbon-heteroatom bonds, facilitating one-carbon editing by simultaneously introducing fluorine into target structures. In this study, we introduce a novel fluoroacetyl sulfonium reagent, (2-ethoxy-1-fluoro-2-oxoethyl)(phenyl)(2,3,4,5-tetramethylphenyl)sulfonium tetrafluoroborate (), serving as an effective alternative to the currently unknown 2-diazo-2-fluoroacetate for ethyl fluoroacetyl carbene transfer. This reagent is applied in Doyle-Kirmse and cyclopropanation reactions operating under mild conditions with the use of earth-abundant metal catalysts. This approach enables the efficient synthesis of valuable monofluorinated products.
有机氟化合物的合成在开发创新药物、材料和农用化学品方面至关重要。氟化卡宾转移为形成新的碳-碳键和碳-杂原子键提供了一种有前景的策略,通过同时将氟引入目标结构来促进单碳编辑。在本研究中,我们引入了一种新型氟乙酰锍试剂,即四氟硼酸(2-乙氧基-1-氟-2-氧代乙基)(苯基)(2,3,4,5-四甲基苯基)锍,作为目前未知的用于氟乙酰卡宾转移的2-重氮-2-氟乙酸乙酯的有效替代物。该试剂应用于在温和条件下使用储量丰富的金属催化剂进行的多伊尔-基尔姆泽反应和环丙烷化反应。这种方法能够高效合成有价值的单氟化产物。