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首页> 外文期刊>Angewandte Chemie >Tuning the Reactivity of Ultrathin Oxides: NO Adsorption on Monolayer FeO(111)
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Tuning the Reactivity of Ultrathin Oxides: NO Adsorption on Monolayer FeO(111)

机译:调整超薄氧化物的反应性:单层FeO(111)上没有NO吸附

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摘要

Ultrathin metal oxides exhibit unique chemical properties and show promise for applications in heterogeneous catalysis. Monolayer FeO films supported on metal surfaces show large differences in reactivity depending on the metal substrate, potentially enabling tuning of the catalytic properties of these materials. Nitric oxide (NO) adsorption is facile on silver-supported FeO, whereas a similar film grown on platinum is inert to NO under similar conditions. Ab initio calculations link this substrate-dependent behavior to steric hindrance caused by substrate-induced rumpling of the FeO surface, which is stronger for the platinum-supported film. Calculations show that the size of the activation barrier to adsorption caused by the rumpling is dictated by the strength of the metal-oxide interaction, offering a straightforward method for tailoring the adsorption properties of ultrathin films.
机译:超薄金属氧化物具有独特的化学性质,并有望在非均相催化中应用。负载在金属表面上的单层FeO膜根据金属基材的反应性差异很大,有可能调节这些材料的催化性能。一氧化氮(NO)吸附在负载银的FeO上很容易,而在铂上生长的相似膜在相似条件下对NO呈惰性。从头算算就将这种与基底有关的行为与由基底引起的FeO表面起皱引起的位阻相关,该位阻对于铂支撑的薄膜更强。计算表明,起皱引起的对吸附的激活屏障的大小取决于金属-氧化物相互作用的强度,从而为调整超薄膜的吸附性能提供了一种直接的方法。

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