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首页> 外文期刊>Journal of Catalysis >Relation between nanoscale Au particle structure and activity for CO oxidation on supported gold catalysts
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Relation between nanoscale Au particle structure and activity for CO oxidation on supported gold catalysts

机译:纳米金颗粒结构与负载型金催化剂上CO氧化活性的关系

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The CO oxidation activity of Au/TiO2, Au/MgAl2O4, and Au/Al2O3 catalysts, all containing approximately 4 wt% Au, was compared with the detailed size and shape of the gold particles in these supported catalysts. Based on the indications that CO oxidation on Au catalysts requires low-coordinated Au atoms, the turnover frequency per An atom located at the corners of the An particles was calculated. A value of approximately 0.8 s(-1) for both the Au/TiO2 and the Au/MgAl2O4 catalyst was found. This represents an example in which the difference in catalytic activity of a Au catalyst with a reducible and irreducible support can be explained by a difference in An particle geometry only, without the need to invoke other support-induced effects. The turnover frequency per corner Au atom in the Au/Al2O3 catalyst is approximately 4 times lower, indicating that other support-induced effects not related to the reducibility may play a role in this case. (c) 2006 Elsevier Inc. All rights reserved.
机译:将所有都含有约4 wt%Au的Au / TiO2,Au / MgAl2O4和Au / Al2O3催化剂的CO氧化活性与这些负载型催化剂中金颗粒的详细尺寸和形状进行了比较。基于Au催化剂上的CO氧化需要低配位的Au原子的指示,计算了位于An颗粒角处的每个An原子的周转频率。发现Au / TiO2和Au / MgAl2O4催化剂的值均约为0.8 s(-1)。这代表了一个实例,其中具有可还原和不可还原的载体的Au催化剂的催化活性差异可以仅通过颗粒几何形状的差异来解释,而无需调用其他载体诱导的效应。 Au / Al2O3催化剂中每个角Au原子的周转频率大约低4倍,这表明在这种情况下,其他与还原性无关的载体诱导效应也可能起作用。 (c)2006 Elsevier Inc.保留所有权利。

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