首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of Pt-MOx (M = Fe, Co) interaction on the preferential oxidation of CO over Pt/MOx/TiO2 catalysts prepared by selective electrostatic adsorption
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Effect of Pt-MOx (M = Fe, Co) interaction on the preferential oxidation of CO over Pt/MOx/TiO2 catalysts prepared by selective electrostatic adsorption

机译:PT-MOX(M = Fe,CO)相互作用对选择性静电吸附制备的CO对Pt / Mox / TiO2催化剂优先氧化的影响

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In this work, the catalytic properties of Pt/MOx/TiO2 (M = Fe, Co) catalysts prepared by strong electrostatic adsorption (SEA), were investigated for the preferential oxidation (PROX) of CO in H-2. The SEA method was chosen to achieve a preferential adsorption of Pt onto supported MOx nanoparticles rather than onto the TiO2 surface. XPS, TPR and TEM analysis indicate that the enhancement in the catalytic activity of Pt/MOx/TiO2 is related to a synergetic effect originated by a close contact between Pt and MOx (M = Fe, Co) surface. The results clearly show that Pt supported on CoOx/TiO2 calcined at 300 degrees C, and then reduced at 100 degrees C, exhibits the highest activity, e.g. higher CO conversion and CO2 selectivity, among the supported catalysts studied in this work, that was attributed to a higher concentration of Pt-CoOx moieties over the catalytic surface. This study reports a simple and efficient way to synthesize Pt-promoted catalysts where strong metal-support interactions are highly desired to improve the catalytic performance of selective oxidation reactions.
机译:在这项工作中,研究了通过强静电吸附(海)制备的Pt / Mox / TiO2(M = Fe,Co)催化剂的催化性质,用于H-2中CO的优先氧化(Prox)。选择海洋方法以实现Pt在负载的MOX纳米颗粒上的优先吸附,而不是在TiO 2表面上。 XPS,TPR和TEM分析表明,PT / MOX / TiO2的催化活性的增强与源自Pt和Mox(M = Fe,Co)表面之间的紧密接触的协同效果有关。结果清楚地表明,在300摄氏度下煅烧的CoOx / TiO 2上的PT,然后在100摄氏度下降低,表现出最高的活性,例如最高活动。在该工作中研究的负载催化剂中,CO转化和CO2选择性更高,其归因于催化表面上的较高浓度的Pt-CoOX部分。本研究报告了一种简单有效的方法来合成Pt促进的催化剂,其中非常需要强烈的金属支持相互作用来改善选择性氧化反应的催化性能。

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