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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >How Does Nanoporous Gold Dissociate Molecular Oxygen?
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How Does Nanoporous Gold Dissociate Molecular Oxygen?

机译:纳米多孔金如何解离分子氧?

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Nanoporous Au and other dilute AgAu alloys are highly active and selective oxidation catalysts. Their ability to dissociate O-2 is to a large extent unexplained, given that unsupported Au cannot generally dissociate O-2 while large ensembles of Ag atoms (>4) are generally necessary to lower the O-2 dissociation barrier significantly. Here, we identify a site on the surface of dilute AgAu alloys that is stable under reaction conditions and has a low O-2 dissociation barrier, in agreement with experimental measurements. Although Ag generally prefers to disperse throughout Au, the presence of adsorbed O near surface steps creates sites of high local Ag concentration, where the Ag, atoms sit in the rows next to the step Au atoms. O-2 adsorbs on the Au step atoms, but the transition state involves significant Ag-O interaction, resulting in a barrier lower than expected from the adsorption energies of either the initial or final state.
机译:纳米多孔金和其他稀AgAu合金是高活性和选择性氧化催化剂。考虑到未负载的Au通常无法解离O-2,而通常需要大量的Ag原子团(> 4)才能显着降低O-2的解离势垒,因此它们的解离O-2的能力在很大程度上无法解释。在这里,我们确定了稀释的AgAu合金表面上的一个位置,该位置在反应条件下是稳定的,并且具有较低的O-2解离势垒,与实验测量结果一致。尽管Ag通常更喜欢分散在整个Au中,但表面台阶附近吸附的O的存在会产生高局部Ag浓度的位点,其中Ag原子排在台阶Au原子旁边的行中。 O-2吸附在Au台阶原子上,但过渡态涉及大量的Ag-O相互作用,导致势垒低于初始或最终态的吸附能所预期的势垒。

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