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Atomic-Scale Dynamics of Surface-Catalyzed Hydrogenation/Dehydrogenation: NH on Pt(111)

机译:表面催化加氢/脱氢的原子尺度动力学:Pt(111)上的NH

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Low-temperature scanning tunneling microscopy (LT-STM) was used to move hydrogen atoms and dissociate NH molecules on a Pt(111) surface covered with an ordered array of nitrogen atoms in a (2 x 2) structure. The N-covered Pt(111) surface was prepared by ammonia oxydehydrogenation, which was achieved by annealing an ammonia-oxygen overlayer to 400 K. Exposing the N-covered surface to H-2(g) forms H atoms and NH molecules. The NH molecules occupy face-centered cubic hollow sites, while the H atoms occupy atop sites. The STM tip was used to dissociate NH and to induce hopping of H atoms. Action spectra consisting of the reaction yield versus applied bias voltage were recorded for both processes, which revealed that they are vibrationally mediated. The threshold voltages for NH dissociation and H hopping were found to be 430 and 272 meV, corresponding to the excitation energy of the N-H stretching and the Pt-H stretching modes, respectively. Substituting H with D results in an isotopic shift of -110 and -84 meV for the threshold voltages for ND dissociation and D hopping, respectively. This further supports the conclusion that these processes are vibrationally mediated.
机译:低温扫描隧道显微镜(LT-STM)用于移动氢原子并解离在(2 x 2)结构中覆盖有序氮原子阵列的Pt(111)表面上的NH分子。通过氨氧脱氢制备N-覆盖的Pt(111)表面,这是通过将氨-氧覆盖层退火至400 K来实现的。将N-覆盖的表面暴露于H-2(g)形成H原子和NH分子。 NH分子占据面心立方空心位置,而H原子占据顶部位置。 STM尖端用于解离NH并诱导H原子跳变。记录了两个过程的反应收率与施加的偏压之间的作用谱,这表明它们是振动介导的。发现NH解离和H跳跃的阈值电压分别为430和272meV,分别对应于N-H拉伸和Pt-H拉伸模式的激发能。用D代替H导致ND离解和D跳跃的阈值电压分别发生-110和-84 meV的同位素位移。这进一步支持了这些过程是振动介导的结论。

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