Pascanu Vlad, Hansen Peter R, Bermejo Gómez Antonio, Ayats Carles, Platero-Prats Ana E, Johansson Magnus J, Pericàs Miquel À, Martín-Matute Belén
Department of Organic Chemistry and Berzelii Center EXSELENT, Arrhenius Laboratory, Stockholm University, Stockholm, 106 91 (Sweden).
ChemSusChem. 2015 Jan;8(1):123-30. doi: 10.1002/cssc.201402858. Epub 2014 Nov 24.
A diverse set of more than 40 highly functionalized biaryls was synthesized successfully through the Suzuki-Miyaura cross-coupling reaction catalyzed by Pd nanoparticles supported in a functionalized mesoporous MOF (8 wt % Pd@MIL-101(Cr)-NH2 ). This could be achieved under some of the mildest conditions reported to date and a strong control over the leaching of metallic species could be maintained, despite the presence of diverse functional groups and/or several heteroatoms. Some of the targeted molecules are important intermediates in the synthesis of pharmaceuticals and we clearly exemplify the versatility of this catalytic system, which affords better yields than 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 applications.
通过负载在功能化介孔金属有机框架(8 wt% Pd@MIL-101(Cr)-NH₂)中的钯纳米颗粒催化的铃木-宫浦交叉偶联反应,成功合成了40多种功能多样的高度官能化联芳基化合物。这可以在迄今为止报道的一些最温和的条件下实现,并且尽管存在多种官能团和/或几个杂原子,仍能有效控制金属物种的浸出。一些目标分子是药物合成中的重要中间体,我们清楚地证明了这种催化体系的多功能性,它比目前现有的商业方法具有更高的产率。最重要的是,Pd@MIL-101-NH₂被装填在微流反应器中,这是关于负载在金属有机框架上的金属纳米颗粒用于流动化学催化应用的首次报道。在不更换催化剂的连续实验中创建了一个由11种分离化合物组成的小型文库,证明了该催化剂在大规模应用中的潜力。