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首页> 外文期刊>Journal of Catalysis >Palladium-doped silica-alumina catalysts obtained from double-flame FSP for chemoselective hydrogenation of the model aromatic ketone acetophenone
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Palladium-doped silica-alumina catalysts obtained from double-flame FSP for chemoselective hydrogenation of the model aromatic ketone acetophenone

机译:从双火焰FSP获得的钯掺杂二氧化硅-氧化铝催化剂,用于模型芳族酮苯乙酮的化学选择性加氢

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Chemoselective hydrogenation of aromatic ketones is an important reaction in the production of fine chemicals and pharmaceuticals. A typical example of this class of reactions is the hydrogenation of acetophenone (Aph) over the supported noble metal catalysts. In this research, Pd/silica-alumina (Pd/SA) catalysts have been prepared for Aph hydrogenation with the emerging double-flame spray pyrolysis system (decouples the two pathways of support formation and metal loading). The Pd particles offered identical electronic properties of Pd surface, which contributed the similar chemoselectivity for the hydrogenation of carbonyl groups on all double-flame-derived catalysts. This revealed a striking difference in Pd surface activity between double-flame and other 5%Pd/SA catalysts. While for supported-Pd catalysts synthesized by other methods, a significant ionic effect of support acidity on the surface Pd particles is reported, and this kind of surface electronic change was not observed for double-flame catalysts. The reaction rate of Aph hydrogenation could be strongly enhanced (TOF from 1.3 × 10~(-2) s~(-1) to 4.5 × 10~(-2) s~(-1)) through tuning the density of surface Br?nsted acid sites on supports of 5%Pd/SA via various Si/Al ratios. These advantages of double-flame-derived catalysts clearly demonstrate that double-flame spray pyrolysis can efficiently tune nano-catalysts and their bifunctional activities for specific surface reactions.
机译:芳香族酮的化学选择性加氢是精细化学品和药物生产中的重要反应。这类反应的典型示例是在负载的贵金属催化剂上进行苯乙酮(Aph)的氢化反应。在这项研究中,Pd /二氧化硅-氧化铝(Pd / SA)催化剂已经制备出来,用于使用新兴的双火焰喷雾热解系统(分离载体形成和金属负载的两个途径)进行Aph加氢。 Pd颗粒提供了与Pd表面相同的电子性能,这为所有双火焰衍生的催化剂上的羰基加氢贡献了相似的化学选择性。这表明双火焰和其他5%Pd / SA催化剂之间的Pd表面活性存在显着差异。对于通过其他方法合成的负载型Pd催化剂,据报道载体酸度对表面Pd颗粒具有明显的离子作用,而对于双火焰催化剂则未观察到这种表面电子变化。通过调节表面Br的密度可以大大提高Aph加氢的反应速率(TOF从1.3×10〜(-2)s〜(-1)提高到4.5×10〜(-2)s〜(-1))。通过各种Si / Al比,在5%Pd / SA的载体上确定酸位。双火焰衍生催化剂的这些优点清楚地表明,双火焰喷雾热解可以有效地调节纳米催化剂及其针对特定表面反应的双功能活性。

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