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Role of modifiers in multi-component MgO-supported Au catalysts designed for preferential CO oxidation

机译:改性剂在设计用于优先CO氧化的多组分MgO负载的Au催化剂中的作用

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MgO-supported gold catalysts modified by V, Pb, Sm, La and Y have been investigated in order to elucidate the role of modifiers in preferential CO oxidation. All catalysts have been prepared by means of homogeneous precipitation of nitrate precursors using urea as a precipitating agent. Catalytic properties and characteristic features of catalysts were investigated in detail. Different spectroscopic techniques (XPS, FTIR and UV-Vis) and HRTEM were applied for catalyst characterization. The coverage of gold nanoparticles by small MgO clusters has been evidenced. Despite the high MgO coverage of gold, the parent Au/MgO catalysts showed high activity in CO oxidation indicating the beneficial effect of MgO in atomic closeness to Au. It has been revealed that in Pb-modified catalysts, gold has been alloyed with Pb. The results definitely indicate that Pb is responsible for the decrease in the number of gold sites involved in the activation of hydrogen. It has been shown that in multi-component catalysts MgO is decorated by nanoclusters of different metal oxides, and the Pb-Au nanoparticles are located in intimate contact to these oxides. In multi-component catalysts, the interfaces formed in this way provide new type of active site ensembles that can adsorb and activate CO and oxygen, while suppressing the activation of hydrogen.
机译:为了阐明改性剂在优先CO氧化中的作用,已经研究了用V,Pb,Sm,La和Y改性的MgO负载的金催化剂。所有催化剂均通过使用尿素作为沉淀剂使硝酸盐前体均匀沉淀而制备。详细研究了催化剂的催化性能和特征。将不同的光谱技术(XPS,FTIR和UV-Vis)和HRTEM用于催化剂表征。事实证明,小的MgO团簇覆盖了金纳米颗粒。尽管金的MgO覆盖率很高,但是母体Au / MgO催化剂在CO氧化中显示出高活性,表明MgO在原子上接近Au的有益作用。已经发现在Pb改性的催化剂中,金已经与Pb形成合金。结果明确表明,铅是造成氢活化中金点数量减少的原因。已经表明,在多组分催化剂中,MgO由不同金属氧化物的纳米簇装饰,并且Pb-Au纳米颗粒与这些氧化物紧密接触。在多组分催化剂中,以这种方式形成的界面提供了新型的活性位点集合体,可以吸附和活化CO和氧,同时抑制氢的活化。

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