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首页> 外文期刊>The Journal of Chemical Physics >Charge effect in S enhanced CO adsorption: A theoretical study of CO on Au, Ag, Cu, and Pd (111) surfaces coadsorbed with S, O, Cl, and Na
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Charge effect in S enhanced CO adsorption: A theoretical study of CO on Au, Ag, Cu, and Pd (111) surfaces coadsorbed with S, O, Cl, and Na

机译:S增强CO吸附的电荷效应:CO在与S,O,Cl和Na共吸附的Au,Ag,Cu和Pd(111)表面上的理论研究

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The extraordinary sulfur enhanced CO adsorption on Au surface creates curiosity to many scientists in the field, and is expected to have potential applications in catalyst design. In this work, we have investigated the interactions of the coadsorption of CO and various adatoms X (X=Na, S, O, and Cl) on Au and Pd(111) surfaces and made further comparison with CO adsorption on charged Au and Pd surfaces by a first-principles study. We find out that the enhancement of CO adsorption by S on Au originates from S-induced positive polarization of Au surface. The d band of metal atoms in the positively polarized Au surface shifts up toward the Fermi level (E_F) without remarkable changes of its shape and occupation. In contrast, in the negatively polarized Au(111) surface, achieved by electropositive adatom such as Na adsorption or artificially adding additional electrons to the substrate, d bands shift down relative to E_F, and thus CO adsorption is weakened. Further study of CO coadsorption with X on two other noble metal (Ag and Cu) surfaces manifests that Ag shows the same behavior as Au does, while the situation of Cu is just between that on Au and Pd. It suggests that the extraordinary S-induced enhancement of CO adsorption on Au/Ag, different from other transition metals (TMs), ultimately results from the inertness of d bands buried below E_F. The S-induced charge can introduce a significant d band shift on Au/Ag with respect to E_F due to their narrow density of states at E_F and thus strengthens CO adsorption subsequently.
机译:非凡的硫增强的CO在Au表面的吸附使本领域的许多科学家产生了好奇心,并有望在催化剂设计中具有潜在的应用。在这项工作中,我们研究了在Au和Pd(111)表面上CO与各种吸附原子X(X = Na,S,O和Cl)的共吸附相互作用,并与CO在带电的Au和Pd上的吸附作了进一步比较。第一原理研究得出的表面。我们发现,S在Au上对CO的吸附增强来自S诱导的Au表面的正极化。在正极化的金表面上,金属原子的d带向费米能级(E_F)上移,而其形状和占有率没有明显变化。相反,在通过正电吸附原子(例如Na吸附)或向基板中人工添加其他电子而实现的负极化Au(111)表面中,d谱带相对于E_F向下移动,因此CO吸附减弱。进一步研究CO与X在另外两个贵金属(Ag和Cu)表面上的共吸附,发现Ag表现出与Au相同的行为,而Cu的情况恰好在Au和Pd上。这表明与其他过渡金属(TMs)不同,S诱导的非凡的S诱导的CO吸附在Au / Ag上的增强,最终是由掩埋在E_F下的d带的惰性导致的。由于S诱导的电荷在E_F处的态密度较窄,因此相对于E_F可以在Au / Ag上引入显着的d带位移,从而随后增强了CO的吸附。

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