Sreenivasulu Chinnabattigalla, Ramesh Perla, Kishore Dakoju Ravi, Srinivas Dasari, Satyanarayana Gedu
Department of Chemistry, Indian Institute of Technology, Hyderabad, Kandi, Sangareddy 502284, Telangana, India.
Org Lett. 2025 Jun 27;27(25):6599-6604. doi: 10.1021/acs.orglett.5c01524. Epub 2025 Jun 17.
Remote -C-H functionalization has emerged as a transformative approach in organic synthesis, allowing for the selective functionalization of inactive -C-H bonds. While considerable progress has been made in -C-H functionalization strategies, including olefination, cyanation, acetoxylation, and arylation, regioselective -C-H homo-biaryl coupling remains unexplored. In this study, we report the first palladium-catalyzed oxidative protocol for regioselective -C-H homo-biaryl coupling, targeting substrates such as 3-phenylpropanoic acid, 2-phenylethan-1-ol, phenylacetic acid, and phenylmethanesulfonic acid derivatives. This method significantly enhances the synthetic tool box for the construction of complex biaryl frameworks with exceptional precision. The reaction proceeds efficiently under ambient conditions, with copper trifluoromethanesulfonate identified as a critical additive for driving the process. Furthermore, this strategy has been extended to the synthesis of complex trimeric and diolefination products. The protocol delivered the desired products in good yields with excellent regioselectivity and demonstrated broad applicability across a range of substrates bearing diverse aliphatic and aromatic nitrile-based directing group templates.
远程C-H官能团化已成为有机合成中的一种变革性方法,能够实现对惰性C-H键的选择性官能团化。尽管在C-H官能团化策略方面已取得了显著进展,包括烯基化、氰化、乙酰氧基化和芳基化,但区域选择性C-H同芳基偶联仍未得到探索。在本研究中,我们报道了首例钯催化的区域选择性C-H同芳基偶联氧化反应方案,其目标底物包括3-苯基丙酸、2-苯基乙醇、苯乙酸和苯甲磺酸衍生物。该方法显著扩充了用于构建具有卓越精度的复杂联芳基骨架的合成工具库。该反应在环境条件下能高效进行,三氟甲磺酸铜被确定为驱动该过程的关键添加剂。此外,该策略已扩展至复杂三聚体和二烯基化产物的合成。该方案以良好的产率和出色的区域选择性提供了所需产物,并在一系列带有不同脂肪族和芳香族腈基导向基团模板的底物中展现出广泛的适用性。