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NH3 Oxidation on Oxygen-Precovered Au(111):A Density Functional Theory Study on Selectivity

机译:富氧Au(111)上的NH3氧化:选择性的密度泛函理论研究

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We have performed density functional theory simulations applied to slabs to study the dehydrogenation of ammonia on the surface of clean and atomic oxygen or hydroxyl precovered Au(111).Ammonia does not dissociate unimolecularly on the surface and needs a proton scavenger to drive decomposition.O atoms or hydroxyl groups on the surface are basic enough to attract the first H atom from the molecule and are also needed in the resting dehydrogenation steps.Recombination steps to form N2 and NO are hindered by barriers lower than those on Pt or Rh(111)due to the low interaction energies of molecular moieties with the Au(111)surface.The barrier for N2 formation is in any case lower than that of NO in agreement with the high selectivity observed toward N2.Finally,coverage effects are discussed for the competing reactions.
机译:我们已经对板进行了密度泛函理论模拟研究,以研究干净的原子和预先覆盖有原子氧或羟基的Au(111)表面上氨的脱氢作用。氨不会在表面上单分子解离,需要质子清除剂来驱动分解。表面上的原子或羟基足够碱性以吸引分子中的第一个H原子,并且在静止的脱氢步骤中也需要。形成N2和NO的重组步骤受低于Pt或Rh(111)的势垒的阻碍由于分子部分与Au(111)表面的相互作用能较低。在任何情况下,形成N2的势垒都比NO的势垒低,这与观察到的对N2的高选择性相一致。最后,讨论了竞争性的覆盖效应。反应。

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