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首页> 外文期刊>Journal of Catalysis >CO Oxidation over Supported Gold Catalysts-'Inert' and Active' Support Materials and Their Role for the Oxygen Supply druing Reaction
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CO Oxidation over Supported Gold Catalysts-'Inert' and Active' Support Materials and Their Role for the Oxygen Supply druing Reaction

机译:负载型金催化剂-“惰性”和“活性”载体材料上的CO氧化及其在催化反应中的供氧作用

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摘要

A thorough comparison of gold catalysts on different support materials as well as activity measurements for Au on mixed oides (Au/Fe_2O_3centre dotMgO)reveal enhanced CO oxidation rates for a group of "active"support materials (Fe_2O_3,TiO_2,NiO_x,CoOx).For Au/Fe_2O_3,it isshown that large amounts of oxygen can adsorb on the support,which most likely represents the oxygen suply during reaction.The high mobility of these oxygen species and the absence of oxygen scrambling with labeled ~(36)O_2 in pulse experiments strongly suggest the adsorption in a molecular form on the iron oxide support.From the absence of the doubly marked product C~(18)O~(18)O,reaction schemes via a carbonate-like intermediate or transition-state can be ruled out.For Au catalysts supported on active materials,the dominant reaction pathway is concluded to involve adsorptionof a mobile,molecular oxygen species on the support,dissociation at the interface,and reaction on the gold particles and/or at the interface with CO adsorbedon the gold.The facile supply with reactive oxygen,via the support,serves as a probale explanation for the observed independence of the turnover frequency from the Au particle size on these catalysts,while for Au supported on inert materials,where the oxygen supply most likely proceeds via direct dissociative adsorption on the Au particles,the size of the latter plays a decisive role.
机译:对不同载体材料上的金催化剂进行彻底比较,以及在混合的oids上测量Au的活性(Au / Fe_2O_3中心点MgO),可以提高一组“活性”载体材料(Fe_2O_3,TiO_2,NiO_x,CoOx)的CO氧化速率。对于Au / Fe_2O_3,表明大量的氧气可以吸附在载体上,这很可能代表了反应期间的氧气。这些氧气种类的高迁移率和没有脉冲的〜(36)O_2扰乱氧气实验强烈建议以分子形式吸附在氧化铁载体上。由于不存在双重标记的产物C〜(18)O〜(18)O,可以决定通过碳酸盐样中间或过渡态的反应方案对于负载在活性材料上的Au催化剂,主要的反应路径被推断为涉及在载体上吸附流动性分子氧,在界面处解离以及在金颗粒和/或界面上的反应。 h CO吸附在金上。通过载体容易地提供活性氧,可以无条件地解释观察到的周转频率与这些催化剂上Au粒径的独立性,而Au负载在惰性材料上,其中氧气供应最有可能通过直接解离吸附在Au颗粒上进行,而Au的大小起着决定性的作用。

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