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Ligand-assisted preparation of highly active and stable nanometric Pd confined catalysts for deep catalytic oxidation of toluene

机译:配体辅助制备高活性和稳定的纳米Pd受限催化剂,用于甲苯的深度催化氧化

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摘要

In this study, mesoporous SBA-15 supported Pd catalysts were synthesized through impregnation and grafting approaches. Moreover, the influences of different solvents (ethanol, H(2)O, tetrahydrofuran, dimethyl sulphoxide and N,N-dimethylformamide) on the dispersion of supported Pd nanoparticles were also systematically investigated. The prepared materials were comprehensively explored by various techniques. including XRD, EDS, ICP-OES, H(2) chemisorption, N(2) adsorption/desorption, TG-DSC, FT-IR, TEM and STEM. It is found that the traditional impregnation method has some disadvantages in obtaining highly dispersed Pd active phase. Whereas, the grafting method could highly disperse Pd nanoparticles within the mesoporous channels of support material, and the grafting procedure should be promising in designing highly dispersed Pd particles on the silica-based mesoporous materials. The catalyst prepared via the grafting procedure possesses much higher activity and selectivity than that prepared by impregnation method for deep catalytic oxidation of toluene. (C) 2010 Elsevier B.V. All rights reserved.
机译:在本研究中,通过浸渍和接枝方法合成了介孔SBA-15负载的Pd催化剂。此外,还系统地研究了不同溶剂(乙醇,H(2)O,四氢呋喃,二甲基亚砜和N,N-二甲基甲酰胺)对负载的Pd纳米颗粒分散性的影响。通过各种技术对所制备的材料进行了全面探索。包括XRD,EDS,ICP-OES,H(2)化学吸附,N(2)吸附/解吸,TG-DSC,FT-IR,TEM和STEM。发现传统的浸渍方法在获得高度分散的Pd活性相方面具有一些缺点。然而,接枝方法可将Pd纳米颗粒高度分散在载体材料的介孔通道内,并且接枝程序对于在二氧化硅基介孔材料上设计高度分散的Pd颗粒应是很有前途的。通过接枝方法制备的催化剂具有比通过浸渍方法制备的催化剂高的活性和选择性,所述方法用于甲苯的深度催化氧化。 (C)2010 Elsevier B.V.保留所有权利。

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