Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Innovative Catalysis Science Division, Institute for Open and Transdisciplinary Research Initiatives (ICS-OTRI), Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Am Chem Soc. 2021 Jun 30;143(25):9308-9313. doi: 10.1021/jacs.1c03760. Epub 2021 Jun 2.
Site-selective and direct C-F bond transformation of perfluoroalkylarenes was achieved with allylic stannanes via an iridium photoredox catalyst system. The present defluoroallylation proceeds exclusively at the benzylic position through perfluoroalkyl radicals generated by a single-electron transfer from an excited photoredox catalyst to perfluoroalkylarenes. A variety of perfluoroalkyl groups are applicable: linear perfluoroalkyl-substituted arenes such as Ar-CF and Ar-CF and heptafluoroisopropylarenes (Ar-CF(CF)) underwent site-selective defluoroallylation. DFT calculation studies revealed that the generated BuSnF traps F to prevent a retroreaction from the unstable perfluoroalkyl radical intermediate, and the radical intermediate favorably reacts with allylic stannanes. The synthesis of a bis(trifluoromethyl)methylene unit containing compound, which is an analog that is useful as a pharmaceutical agent for the prophylaxis or treatment of diabetes and inflammatory diseases, demonstrated the utility of this reaction.
通过铱光氧化还原催化剂体系,实现了烯丙基锡烷对全氟芳基的选择性和直接 C-F 键转化。目前的脱氟烯丙基化反应仅在苄位进行,通过光氧化还原催化剂的单电子转移从全氟芳基生成全氟烷基自由基。各种全氟烷基基团都是适用的:线性全氟烷基取代的芳基,如 Ar-CF 和 Ar-CF,以及七氟异丙基芳基(Ar-CF(CF)),都经历了选择性的脱氟烯丙基化反应。DFT 计算研究表明,生成的 BuSnF 捕获 F 以防止不稳定的全氟烷基自由基中间体的逆反应,并且自由基中间体有利于与烯丙基锡烷反应。含双(三氟甲基)亚甲基单元的化合物的合成,作为预防或治疗糖尿病和炎症性疾病的药物的类似物,证明了该反应的实用性。