Nobile Enzo, Doche Floriane, Castanheiro Thomas, Musaev Djamaladdin G, Besset Tatiana
INSA Rouen Normandie, Univ Rouen Normandie, CNRS, Normandie Univ, COBRA UMR 6014, INC3M FR 3038, F-76000, Rouen, France.
Cherry L. Emerson Center for Scientific Computation, Department of Chemistry, Emory University, 30322, Atlanta, Georgia, United States.
Chemistry. 2024 Feb 7;30(8):e202303362. doi: 10.1002/chem.202303362. Epub 2023 Dec 14.
Herein, we report the Cu-complex catalyzed, native functional group-assisted, and TFA/NMF additives promoted (phenylsulfonyl)difluoromethylation of vinylic C(sp )-H bond of acrylamides. Using our in-home designed reagent, this reaction enables the construction of the C(sp )-CF SO Ph bond from simple C-H bond activation by copper catalysis under mild reaction conditions with total Z-selectivity. The versatility of utilized fluorinated group was illustrated by its conversion into value-added CF moieties as well as the remarkable =CHF residue. The performed experimental and computational mechanistic studies enabled to identify the true nature of active catalyst and substrate, as well as establish critical roles of TFA and NMF additives. In this reaction, the TFA acts as a promoter of the much-needed Cu /Cu →Cu /Cu disproportionation, while the NMF facilitates the following ligand exchange and C-C coupling processes. We ruled out the generation of radical intermediates and established the C-H activation to be irreversible and the rate-determining step of the entire process.
在此,我们报道了铜配合物催化、天然官能团辅助以及三氟乙酸/ N -甲基甲酰胺添加剂促进的丙烯酰胺烯基C(sp²)-H键的(苯磺酰基)二氟甲基化反应。使用我们自主设计的试剂,该反应能够在温和的反应条件下,通过铜催化从简单的C-H键活化构建C(sp²)-CF₂SO₂Ph键,并具有完全的Z选择性。所使用的氟化基团的多功能性体现在它可以转化为增值的CF₂部分以及显著的=CHF残基。进行的实验和计算机理研究能够确定活性催化剂和底物的真实性质,并确立三氟乙酸和N -甲基甲酰胺添加剂的关键作用。在该反应中,三氟乙酸充当急需的Cu²⁺/Cu⁺→Cu⁺/Cu⁰歧化反应的促进剂,而N -甲基甲酰胺则促进随后的配体交换和C-C偶联过程。我们排除了自由基中间体的生成,并确定C-H活化是不可逆的,且是整个过程的速率决定步骤。