Erathodiyil Nandanan, Ooi Samuel, Seayad Abdul M, Han Yu, Lee Su Seong, Ying Jackie Y
Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, The Nanos, Singapore 138669, Singapore.
Chemistry. 2008;14(10):3118-25. doi: 10.1002/chem.200701361.
This paper describes the synthesis, characterization and applications of palladium (Pd) nanoparticles supported on siliceous mesocellular foam (MCF). Pd nanoparticles of 2-3 nm and 4-6 nm were used in reactions involving molecular hydrogen (such as hydrogenation of double bonds and reductive amination), transfer hydrogenation of ketones and epoxides, and coupling reactions (such as Heck and Suzuki reactions). They successfully catalyzed all these reactions with excellent yield and selectivity. This heterogeneous catalyst was easily recovered by filtration, and recycled several times without any significant loss in activity and selectivity. The palladium leaching in the reactions was determined to be much less than the FDA-approved limit of 5 ppm. Furthermore, the catalyst can be stored and handled under normal atmospheric conditions. This immobilized catalyst allows for ease of recovery/reuse and minimization of waste generation, which are of great interest in the development of green chemical processes.
本文描述了负载在硅质介孔泡沫(MCF)上的钯(Pd)纳米颗粒的合成、表征及应用。2 - 3纳米和4 - 6纳米的钯纳米颗粒用于涉及分子氢的反应(如双键氢化和还原胺化)、酮和环氧化物的转移氢化以及偶联反应(如Heck反应和Suzuki反应)。它们成功催化了所有这些反应,产率和选择性都很高。这种非均相催化剂通过过滤很容易回收,并可循环使用多次,活性和选择性没有任何显著损失。经测定,反应中钯的浸出量远低于美国食品药品监督管理局(FDA)批准的5 ppm的限值。此外,该催化剂可以在正常大气条件下储存和处理。这种固定化催化剂便于回收/再利用,并将废物产生量降至最低,这在绿色化学工艺的开发中具有重要意义。