首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Adsorbate-Adsorbate Interactions and Chemisorption at Different Coverages Studied by Accurate ab initio Calculations: CO on Transition Metal Surfaces
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Adsorbate-Adsorbate Interactions and Chemisorption at Different Coverages Studied by Accurate ab initio Calculations: CO on Transition Metal Surfaces

机译:通过精确的从头算研究的不同覆盖范围内的吸附物-吸附物相互作用和化学吸附:过渡金属表面上的CO

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We use density functional theory (DFT) with the generalized gradient approximation (GGA) and our first-principles extrapolation method for accurate chemisorption energies (Mason et al.Phys.Rev.B 2004,69,161401R) to calculate the chemisorption energy for CO on a variety of transition metal surfaces for various adsorbate densities and patterns.We identify adsorbate through-space repulsion,bonding competition,and substrate-mediated electron delocalization as key factors determining the preferred chemisorption patterns for different metal surfaces and adsorbate coverages.We discuss how the balance of these interactions,along with the inherent adsorption site preference on each metal surface,can explain the observed CO adsorbate patterns at different coverages.
机译:我们使用具有泛化梯度近似(GGA)的密度泛函理论(DFT)和我们的第一原理外推法来获得精确的化学吸附能(Mason等,Phys.Rev.B 2004,69,161401R)计算CO的化学吸附能在各种过渡金属表面上,具有不同的吸附物密度和图案。我们将吸附物的空间排斥,键竞争和底物介导的电子离域确定为决定不同金属表面和吸附物覆盖率的首选化学吸附方式的关键因素。这些相互作用的平衡,以及每个金属表面固有的吸附位点偏好,可以解释在不同覆盖率下观察到的CO吸附物模式。

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