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Tunability of the CO adsorption energy on a Ni/Cu surface: Site change and coverage effects

机译:在Ni / Cu表面上的CO吸附能量的可调性:现场变化和覆盖效果

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摘要

The adsorption energy of carbon monoxide on Ni ad-islands and ultra-thin films grown on the Cu(110) surface can be finely tuned via a complex interplay among diffusion, site change mechanisms, and coverage effects. The observed features of CO desorption can be explained in terms of migration of CO molecules from Cu to Ni islands, competition between bridge and on-top adsorption sites, and repulsive lateral adsorbate-adsorbate interactions. While the CO adsorption energy on clean Cu(110) is of the order of 0.5 eV, Ni-alloying allows for its controlled, continuous tunability in the 0.98-1.15 eV range with Ni coverage. Since CO is a fundamental reactant and intermediate in many heterogeneous catalytic (electro)-conversion reactions, insight into these aspects with atomic level detail provides useful information to potentially drive applicative developments. The tunability range of the CO adsorption energy that we measure is compatible with the already observed tuning of conversion rates by Ni doping of Cu single crystal catalysts for methanol synthesis from a CO2, CO, and H2 stream under ambient pressure conditions.
机译:在Cu(110)表面上生长的Ni ad-ills和超薄膜上的一氧化碳的吸附能可以通过扩散,现场变化机制和覆盖效果之间的复杂相互作用来细化。通过Co分子从Cu至Ni岛的迁移,桥梁和顶部吸附位点的竞争,以及排斥横向吸附性 - 吸附相互作用的相互作用的观察到的CO解吸的特征可以解释。虽然CON CUL(110)上的CO吸附能量为0.5eV,但NI合金化允许其在0.98-1.15 EV范围内控制的,连续的可调性与NI覆盖范围。由于CO是许多异质催化(电催化)的基本反应物和中间体,因此具有原子水平细节的这些方面的见解提供了有用的信息,以潜在地推动应用的应用。我们测量的Co吸附能的可调性范围与已经观察到通过在环境压力条件下由CO 2,CO和H 2流的甲醇合成的Cu单晶催化剂的Ni掺杂的转化率调整。

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