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Mesoporous silica encapsulating Rh(0) colloids : structure and catalytic properties

机译:中孔二氧化硅包封RH(0)胶体:结构和催化性能

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Colloidal metallic precursors have been used successfully to prepare new rhodium(0) supported mesoporous catalysts.The aqueous dispersion of Rh(0) previously synthesized was added either (i) to preformed mesoporous silica (MCM-41 or SBA-15) or (ii) to the gel mixture used for the solid synthesis.The different materials have been characterized by TEM,N_2 adsorption-desorption,PXRD and elemental analysis.All the solids,especially those obtained by the direct route,reveal well-organized mesoporous structures.Their catalytic activity was investigated in the hydrogenation of aromatic ring (conversion of styrene into ethylcyclohexane) and was shown to be better in hexane than in cthanol.The solids prepared by impregnation of MCM-41 and SBA-15 with Rh(0) colloids (pathway (i)) afforded the best yields of ethylcyclohexane (up to 100% in hexane and 72% in ethanol,respectively).
机译:已成功使用胶体金属前体以制备新的铑(0)负载的介孔催化剂。将先前合成的Rh(0)的水分散体加入(I)中以预先成形的介孔二氧化硅(MCM-41或SBA-15)或(II) )对于用于固体合成的凝胶混合物。通过TEM,N_2吸附 - 解吸,PXRD和元素分析表征了不同的材料。所有的固体,尤其是通过直接路线获得的固体,揭示了有组织的中孔结构。目的在芳环的氢化中研究了催化活性(将苯乙烯转化为乙基环己烷),并且显示在己烷中比在Cthanol中更好。通过用RH(0)胶体浸渍MCM-41和SBA-15制备的固体(途径(i))分别得到最佳产率的乙基环己烷(己烷中高达1​​00%,乙醇中的72%)。

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