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Theoretical study of the adsorption of oxygen on a Cu(100) surface and the coadsorption with alkali atoms

机译:氧在Cu(100)表面的吸附以及与碱原子的共吸附的理论研究

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We performed a theoretical study of the adsorption of oxygen on a cluster model of the Cu(100) surface and also the surface coadsorbed with lithium and potassium atoms. The study showed that alkali coadsorption facilitates in a significant way the process of molecular adsorption, whereas the adsorption of atomic oxygen is only slightly modified. The alkali atoms on the copper surface produce an increase in the charge transfer toward the oxygen molecule, favoring the oxygen dissociation. The effect is greater for the potassium coadsorption. In addition, we found that the potassium coadsorption favored the dissociation and recombination processes by about 60 and 15%, respectively. In turn, the lithium coadsorption favored only the recombination process by about 50%. These results could be an important aspect for catalytic processes. [References: 47]
机译:我们对Cu(100)表面以及与锂和钾原子共吸附的表面簇模型上的氧吸附进行了理论研究。研究表明,碱共吸附在很大程度上促进了分子吸附的过程,而原子氧的吸附仅稍有改变。铜表面的碱原子会增加电荷向氧分子的转移,有利于氧的离解。对于钾的共吸附作用更大。此外,我们发现钾共吸附分别有利于解离和重组过程,分别约占60%和15%。反过来,锂共吸附仅有利于重组过程约50%。这些结果可能是催化过程的重要方面。 [参考:47]

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