Department of Chemistry, Gwangju Institute of Science and Technology (GIST), Gwangju 61005, Republic of Korea.
Org Biomol Chem. 2021 Feb 11;19(5):1009-1016. doi: 10.1039/d0ob02359k.
Suzuki-Miyaura (SM) cross-coupling is one of the most effective strategies for carbon-carbon bond formation, but previous methods have several drawbacks, such as the requirement of complicated ligands, toxic organic solvents, and high-content-Pd catalysts. Thus, in this study, a highly efficient SM cross-coupling was developed using metal oxide catalysts: 0.02 mol% Pd, aqueous solvent, no ligand, and room temperature. Metal oxides containing low Pd content (ppm scale) were prepared by a simple co-precipitation method and used as a catalyst for the SM reaction. A fluorescence-based high-throughput screening (HTS) method was developed for the rapid evaluation of catalytic activity and reaction conditions. Among the various metal oxides, Pd/Fe2O3 showed the highest activity for the SM reaction. After further optimization by HTS, various biaryl compounds were obtained under optimal conditions: Pd/Fe2O3 (0.02 mol% Pd) in aqueous ethanol at mild temperature without any ligands.
铃木-宫浦(SM)交叉偶联是形成碳-碳键的最有效策略之一,但以前的方法有几个缺点,例如需要复杂的配体、有毒有机溶剂和高含量钯催化剂。因此,在本研究中,使用金属氧化物催化剂开发了一种高效的 SM 交叉偶联反应:0.02 mol%Pd、水性溶剂、无配体和室温。通过简单的共沉淀法制备了含有低 Pd 含量(ppm 级)的金属氧化物,并将其用作 SM 反应的催化剂。建立了基于荧光的高通量筛选(HTS)方法,用于快速评估催化活性和反应条件。在各种金属氧化物中,Pd/Fe2O3 对 SM 反应表现出最高的活性。通过 HTS 进一步优化后,在最佳条件下得到了各种联苯化合物:Pd/Fe2O3(0.02 mol%Pd)在水-乙醇中温和温度下,无需任何配体。