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Selective adsorption of a supramolecular structure on flat and stepped gold surfaces

机译:超分子结构在平坦和阶梯状金表面上的选择性吸附

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Halogenated aromatic molecules assemble on surfaces forming both hydrogen and halogen bonds. Even though these systems have been intensively studied on flat metal surfaces, high-index vicinal surfaces remain challenging, as they may induce complex adsorbate structures. The adsorption of 2,6-dibromoanthraquinone (2,6-DBAQ) on flat and stepped gold surfaces is studied by means of van der Waals corrected density functional theory. Equilibrium geometries and corresponding adsorption energies are systematically investigated for various different adsorption configurations. It is shown that bridge sites and step edges are the preferred adsorption sites for single molecules on flat and stepped surfaces, respectively. The role of van der Waals interactions, halogen bonds and hydrogen bonds are explored for a monolayer coverage of 2,6-DBAQ molecules, revealing that molecular flexibility and intermolecular interactions stabilize two-dimensional networks on both flat and stepped surfaces. Our results provide a rationale for experimental observation of molecular carpeting on high-index vicinal surfaces of transition metals. (C) 2017 Elsevier B.V. All rights reserved.
机译:卤代芳族分子在形成氢键和卤素键的表面组装。即使已经在平坦的金属表面上对这些系统进行了深入研究,但高折射率邻面仍然具有挑战性,因为它们可能会诱发复杂的吸附物结构。利用范德华校正密度泛函理论研究了2,6-二溴蒽醌(2,6-DBAQ)在平坦和阶梯状金表面上的吸附。对于各种不同的吸附构型,系统地研究了平衡几何构型和相应的吸附能。结果表明,对于平坦表面和台阶表面上的单个分子,桥位和台阶边缘分别是优选的吸附位点。探索了范德华相互作用,卤素键和氢键对2,6-DBAQ分子的单层覆盖作用,揭示了分子的柔性和分子间的相互作用稳定了平面和阶梯表面上的二维网络。我们的结果为在过渡金属的高折射率邻域表面上进行分子覆盖提供了实验观察的依据。 (C)2017 Elsevier B.V.保留所有权利。

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