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Methanol Adsorption and Reaction on Samaria Thin Films on Pt(111)

机译:Pt(111)上Samaria薄膜上甲醇的吸附和反应

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摘要

We investigated the adsorption and reaction of methanol on continuous and discontinuous films of samarium oxide (SmOx) grown on Pt(111) in ultrahigh vacuum. The methanol decomposition was studied by temperature programmed desorption (TPD) and infrared reflection absorption spectroscopy (IRRAS), while structural changes of the oxide surface were monitored by low-energy electron diffraction (LEED). Methanol dehydrogenates to adsorbed methoxy species on both the continuous and discontinuous SmOx films, eventually leading to the desorption of CO and H2 which desorbs at temperatures in the range 400–600 K. Small quantities of CO2 are also detected mainly on as-prepared Sm2O3 thin films, but the production of CO2 is limited during repeated TPD runs. The discontinuous film exhibits the highest reactivity compared to the continuous film and the Pt(111) substrate. The reactivity of methanol on reduced and reoxidized films was also investigated, revealing how SmOx structures influence the chemical behavior. Over repeated TPD experiments, a SmOx structural/chemical equilibrium condition is found which can be approached either from oxidized or reduced films. We also observed hydrogen absence in TPD which indicates that hydrogen is stored either in SmOx films or as OH groups on the SmOx surfaces.
机译:我们研究了在超高真空下在Pt(111)上生长的氧化continuous(SmOx)连续和不连续膜上甲醇的吸附和反应。通过程序升温脱附(TPD)和红外反射吸收光谱(IRRAS)研究了甲醇的分解,同时通过低能电子衍射(LEED)监测了氧化物表面的结构变化。甲醇在连续和不连续的SmOx薄膜上脱氢成吸附的甲氧基物质,最终导​​致CO和H2的解吸,它们在400-600 K的温度范围内解吸。主要在制备好的Sm2O3薄层上也检测到少量的CO2。薄膜,但是在重复的TPD运行期间,二氧化碳的产生受到限制。与连续膜和Pt(111)基板相比,不连续膜具有最高的反应性。还研究了甲醇在还原和再氧化膜上的反应性,揭示了SmOx结构如何影响化学行为。通过重复的TPD实验,发现了SmOx的结构/化学平衡条件,可以通过氧化膜或还原膜来达到。我们还观察到TPD中不存在氢,这表明氢要么存储在SmOx膜中,要么作为OH基团存储在SmOx表面上。

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