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Platinum nanoparticles supported on ionic liquid-modified magnetic nanoparticles : Selective hydrogenation catalysts

机译:负载在离子液体改性的磁性纳米粒子上的铂纳米粒子:选择性加氢催化剂

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摘要

A method for supporting platinum nanoparticles on magnetite nanoparticles is described. The method requires modification of the surface of the magnetic nanoparticles with ionic liquid groups. Before modification, the magnetic nanoparticles are not stable and easilyaggrega te and, after modification, the magnetite nanoparticles become highly stable and soluble in polar or non-polar organic solvents depending on the alkyl group of the linked ionic liquids. The supporting of platinum nanoparticles on the modified magnetic nanoparticles was achieved byadsorb ing platinum salts (K\u2082PtCl\u2084) on the surface of the magnetite nanoparticles via ion exchange with the linked ionic liquid groups and then reducing them byhy drazine. The supported platinum nanoparticles were applied in the catalytic hydrogenation of alkynes in which cis-alkenes were selectivelyproduce d, and in the hydrogenation of \u3b1,\u3b2-unsaturated aldehydes where the allyl alcohols were obtained as the exclusive products. The new catalyst can be easilysep arated from the reaction mixtures by applying an external magnetic field and recycled.
机译:描述了将铂纳米颗粒负载在磁铁矿纳米颗粒上的方法。该方法需要用离子液体基团修饰磁性纳米颗粒的表面。改性前,磁性纳米颗粒不稳定且容易凝结,改性后,磁铁矿纳米颗粒变得高度稳定,可溶于极性或非极性有机溶剂中,具体取决于连接的离子液体的烷基。铂纳米粒子在修饰的磁性纳米粒子上的负载是通过与连接的离子液体基团进行离子交换,然后通过二嗪还原而在磁铁矿纳米粒子表面吸附铂盐(K \ u2082PtCl \ u2084)来实现的。将负载的铂纳米颗粒应用于炔烃的催化加氢反应中,其中选择性地生成了顺式烯烃,以及在\ u3b1,\ u3b2不饱和醛的氢化反应中获得了烯丙醇作为独家产品。通过施加外部磁场可以很容易地从反应混合物中分离出新催化剂并进行循环。

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