Department of Chemistry, Jadavpur University, Kolkata 700 032, India.
Langmuir. 2013 Mar 5;29(9):3140-51. doi: 10.1021/la304147j. Epub 2013 Feb 19.
An ecofriendly solid catalyst has been synthesized by anchoring palladium(II) into post synthetically modified metal organic framework IRMOF-3. The pore of IRMOF-3 was first modified with pyridine-2-aldehyde. The amine group of IRMOF-3 upon condensation with pyridine-2-aldehyde afforded a bidentate Schiff base moiety in the porous matrix. The Schiff base moieties were used to anchor palladium(II) ions. The prepared catalyst has been characterized by UV-vis, IR spectroscopy, X-ray powder diffraction, and nitrogen sorption measurements. Framework structure of the catalyst is not being destroyed in the multistep synthesis procedure as evidenced in X-ray powder diffraction studies. The catalyst has shown high activity toward the Suzuki and Stille cross-coupling reaction in 20% H2O/EtOH and EtOH medium, respectively, at 80 °C. The immobilized complex did not leach or decompose during the catalytic reactions, showing practical advantages over the homogeneous catalysis.
已通过将钯(II)锚定到后合成修饰的金属有机骨架 IRMOF-3 中来合成环保型固体催化剂。首先用吡啶-2-醛修饰 IRMOF-3 的孔。IRMOF-3 的胺基与吡啶-2-醛缩合,在多孔基质中提供了双齿席夫碱部分。席夫碱部分用于锚定钯(II)离子。通过 UV-vis、IR 光谱、X 射线粉末衍射和氮气吸附测量对制备的催化剂进行了表征。X 射线粉末衍射研究表明,在多步合成过程中催化剂的骨架结构没有被破坏。该催化剂在 80°C 下,在 20%H2O/EtOH 和 EtOH 介质中,对 Suzuki 和 Stille 交叉偶联反应表现出高活性。在催化反应过程中,固载配合物没有浸出或分解,与均相催化相比具有实际优势。