Hierarchically porous materials are of great interest in such applications as catalysis, drug delivery, chromatography, and electrochemical sensor arrays due to properties such as high surface area, large void volume, and tunable surface chemistry. In this study, we give the detailed report of the synthesis of supported Ag nanoparticles by nanocasting on to hierarchically porous SiO2 (silica) and Co3O4 (cobalt oxide) monoliths, as well as the use of these materials as heterogeneous catalysts for the hydrogenation and oxidation reactions. In the preliminary work, we investigated the synthesis of Ag supported on hierarchically porous SiO2 and Co3O4 monoliths, and the catalytic activity of these monoliths for the hydrogenation of MB (methylene blue) and MO (methyl orange) dyes in the presence of NaBH4 (sodium borohydride). The SiO2 monoliths were synthesized using a sol-gel technique. The Co3O4 monoliths were prepared by nanocasting, using the SiO2 monoliths as a template. The loading of Ag nanoparticles on the SiO2 and Co3O4 monoliths was done by a solution infiltration method using aqueous AgNO3 (silver nitrate) solution followed by reduction with ethylene glycol and hydrazine hydrate. Such monoliths also were used as continuous flow monolithic microreactors for the catalytic activity and stability studies for the hydrogenation of EO (eosin-Y) dye in the presence of NaBH4. Finally, the use of these monoliths for the oxidation of cyclohexene was investigated including the effects of temperature, oxidant, catalyst loading, and substrate to oxidant ratio. All these studies are presented in different sections depending on the different synthesis, procedures, and catalytic activity occurring in each heterogeneous catalyst.
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机译:由于诸如高表面积,大空隙体积和可调节的表面化学性质,分层多孔材料在诸如催化,药物递送,色谱法和电化学传感器阵列的应用中引起极大兴趣。在这项研究中,我们提供了通过纳米铸造到多孔SiO2(二氧化硅)和Co3O4(氧化钴)整料上的纳米铸造合成负载型银纳米颗粒的详细报告,以及将这些材料用作氢化和氧化的非均相催化剂反应。在初步工作中,我们研究了在多孔SiO2和Co3O4整体载体上负载的Ag的合成,以及在NaBH4(钠)存在下这些整体载体对MB(亚甲基蓝)和MO(甲基橙)染料加氢的催化活性。硼氢化物)。使用溶胶-凝胶技术合成了SiO 2整料。以SiO 2整体料为模板,通过纳米浇铸制备了Co 3 O 4整体料。通过使用AgNO3(硝酸银)水溶液的溶液渗透法,然后用乙二醇和水合肼还原,将Ag纳米颗粒加载到SiO2和Co3O4整料上。此类整料还用作连续流动的整料微反应器,用于在NaBH4存在下催化EO(eosin-Y)染料氢化的催化活性和稳定性。最后,研究了这些整体材料用于环己烯氧化的用途,包括温度,氧化剂,催化剂负载量以及底物与氧化剂的比例的影响。所有这些研究都将根据不同的合成方法,程序和每种非均相催化剂中发生的催化活性在不同的部分进行介绍。
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