Highly Functionalized Biaryls via Suzuki-Miyaura Cross-Coupling Catalyzed by Pd@MOF under Batch and Continuous Flow Regimes
作者:Vlad Pascanu、Peter R. Hansen、Antonio Bermejo Gómez、Carles Ayats、Ana E. Platero-Prats、Magnus J. Johansson、Miquel À. Pericàs、Belén Martín-Matute
DOI:10.1002/cssc.201402858
日期:2015.1
currently existing commercial procedures. Most importantly, Pd@MIL‐101‐NH2 was packed in a micro‐flow reactor, which represents the first report of metallic nanoparticles supported on MOFs employed in flow chemistry for catalytic applications. A small library of 11 isolated compounds was created in a continuous experiment without replacing the catalyst, demonstrating the potential of the catalyst for large‐scale
通过在功能化介孔MOF(8 wt%Pd @ MIL-101(Cr)-NH 2)中负载的Pd纳米粒子催化的Suzuki-Miyaura交叉偶联反应,成功合成了多种多样的40多种高度官能化的联芳基。尽管存在各种官能团和/或几个杂原子,但可以在迄今报道的某些最温和的条件下实现这一目标,并且可以保持对金属物种浸出的强有力控制。一些目标分子是药物合成中的重要中间体,我们清楚地举例说明了该催化系统的多功能性,与当前现有的商业程序相比,该催化系统的收率更高。最重要的是,Pd @ MIL-101-NH 2将其装在微流反应器中,这代表了在流化学中用于催化应用的MOF上负载的金属纳米颗粒的首次报道。在不替换催化剂的情况下,通过连续实验创建了一个11个分离的化合物的小型文库,证明了该催化剂在大规模应用中的潜力。