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首页> 外文期刊>The Journal of Chemical Physics >Many-body dispersion effects in the binding of adsorbates on metal surfaces
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Many-body dispersion effects in the binding of adsorbates on metal surfaces

机译:多体分散作用影响金属表面吸附物的结合

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A correct description of electronic exchange and correlation effects for molecules in contact with extended (metal) surfaces is a challenging task for first-principles modeling. In this work, we demonstrate the importance of collective van der Waals dispersion effects beyond the pairwise approximation for organic-inorganic systems on the example of atoms, molecules, and nanostructures adsorbed on metals. We use the recently developed many-body dispersion (MBD) approach in the context of density-functional theory [Tkatchenko et al., Phys. Rev. Lett. 108, 236402 (2012) and Ambrosetti et al., J. Chem. Phys. 140, 18A508 (2014)] and assess its ability to correctly describe the binding of adsorbates on metal surfaces. We briefly review the MBD method and highlight its similarities to quantum-chemical approaches to electron correlation in a quasiparticle picture. In particular, we study the binding properties of xenon, 3,4,9,10-perylene-tetracarboxylic acid, and a graphene sheet adsorbed on the Ag(111) surface. Accounting for MBD effects, we are able to describe changes in the anisotropic polarizability tensor, improve the description of adsorbate vibrations, and correctly capture the adsorbate-surface interaction screening. Comparison to other methods and experiment reveals that inclusion of MBD effects improves adsorption energies and geometries, by reducing the overbinding typically found in pairwise additive dispersion-correction approaches. (C) 2015 AIP Publishing LLC.
机译:对于第一性原理建模,正确描述与扩展的(金属)表面接触的分子的电子交换和相关效应是一项艰巨的任务。在这项工作中,我们证明了有机-无机系统的成对范德华分散效应的重要性,超越了成对近似的有机-无机系统,例如吸附在金属上的原子,分子和纳米结构。我们在密度泛函理论的背景下使用了最近开发的多体分散(MBD)方法[Tkatchenko等,Phys。牧师108,236402(2012)和Ambrosetti等,J.Chem。物理140,18A508(2014)]并评估其正确描述金属表面吸附物结合的能力。我们简要回顾了MBD方法,并突出了其与准粒子图片中电子相关的量子化学方法的相似性。特别是,我们研究了氙,3,4,9,10-per-四羧酸和吸附在Ag(111)表面的石墨烯片的结合性能。考虑到MBD效应,我们能够描述各向异性极化率张量的变化,改进对吸附物振动的描述,并正确捕获吸附物与表面的相互作用。与其他方法和实验的比较表明,通过减少成对的添加剂分散校正方法中通常存在的过度结合,MBD效果的纳入可提高吸附能和几何形状。 (C)2015 AIP Publishing LLC。

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