Rocha Angela S, da Silva Victor Teixeira, Eon Jean G, de Menezes Sônia M C, Faro Arnaldo C, Rocha Alexandre B
Departamento de Físico-Química and Departamento de Química Inorgânica, Instituto de Química, UFRJ, Ilha do Fundão, CT, Bloco A, Rio de Janeiro, RJ, CEP 21949-900, Brazil.
J Phys Chem B. 2006 Aug 17;110(32):15803-11. doi: 10.1021/jp061153x.
Carburized molybdenum catalysts supported on a dealuminated NaH-Y zeolite were prepared by carburization under a 20% methane in hydrogen flow of two precursors obtained by adsorption of molybdenum hexacarbonyl, one containing 5 wt % and the other 10 wt % Mo, and a third one was prepared by impregnation with aqueous ammonium heptamolybdate, containing 5 wt % Mo. The three catalysts displayed very distinct behaviors in the benzene hydrogenation reaction at atmospheric pressure and 363 K. By using XANES spectroscopy at the molybdenum L edge, EXAFS and XANES spectroscopy at the molybdenum K edge, and 27Al solid-state NMR spectroscopy, it was shown that different carburized molybdenum species exist in each sample. In the catalyst containing 10 wt % Mo, formation of molybdenum carbide nanoparticles was observed, with an estimated diameter of 1.8 nm. In the catalyst containing 5 wt % Mo and prepared by carburization of adsorbed molybdenum hexacarbonyl, formation of molybdenum oxycarbide dimers is proposed. In the latter case, density functional theory calculations have led to a dimer structure which is compatible with EXAFS results. In the catalyst prepared by impregnation with ammonium heptamolybdate solution followed by carburization, the molybdenum seems to interact with extraframework alumina to produce highly disordered mixed molybdenum-aluminum oxycarbides.
在脱铝的NaH - Y沸石上负载的渗碳钼催化剂,是通过在20%甲烷 - 氢气气流下对两种由六羰基钼吸附得到的前驱体进行渗碳制备的,一种含5 wt%的钼,另一种含10 wt%的钼,第三种是通过用含5 wt%钼的七钼酸铵水溶液浸渍制备的。这三种催化剂在常压和363 K的苯加氢反应中表现出非常不同的行为。通过在钼L边进行X射线吸收近边结构(XANES)光谱分析、在钼K边进行扩展X射线吸收精细结构(EXAFS)和XANES光谱分析以及27Al固体核磁共振光谱分析,结果表明每个样品中存在不同的渗碳钼物种。在含10 wt%钼的催化剂中,观察到碳化钼纳米颗粒的形成,估计直径为1.8 nm。在含5 wt%钼且通过吸附的六羰基钼渗碳制备的催化剂中,提出了碳化钼氧二聚体的形成。在后一种情况下,密度泛函理论计算得出了与EXAFS结果相符的二聚体结构。在用七钼酸铵溶液浸渍后再进行渗碳制备的催化剂中,钼似乎与骨架外氧化铝相互作用,生成高度无序的混合钼 - 铝碳氧化物。