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Role of the van der Waals interactions on the bonding mechanism of pyridine on Cu(110) and Ag(110) surfaces: A first-principles study

机译:范德华相互作用对吡啶在Cu(110)和Ag(110)表面结合机理的作用:第一性原理研究

摘要

We performed density-functional calculations aimed to investigate the adsorption mechanism of a single pyridine (C5H5N) molecule on Cu(110) and Ag(110) surfaces. Our ab initio simulations show that, in the ground state, the pyridine molecule adsorbs with its molecular plane perpendicular to these substrates and is oriented along the [001] direction. In this case, the bonding mechanism involves a sigma bond through the lone-pair electrons of the nitrogen atom. When the heterocyclic ring is parallel to the surface, the bonding takes place via pi-like molecular orbitals. However, depending on the position of the N atom on the surface, the planar adsorption configuration can relax to a perpendicular geometry. The role of the long-range van der Waals interactions on the adsorption geometries and energies was analyzed in the framework of the semiempirical method proposed by Grimme [J. Comput. Chem. 27, 1787 (2006)]. We demonstrate that these dispersion effects are very important for geometry and electronic structure of flat adsorption configurations.
机译:我们进行了密度泛函计算,旨在研究单个吡啶(C5H5N)分子在Cu(110)和Ag(110)表面上的吸附机理。我们的从头开始的模拟显示,在基态下,吡啶分子吸附时其分子平面垂直于这些底物,并沿[001]方向定向。在这种情况下,键合机制涉及通过氮原子的孤对电子的sigma键。当杂环与表面平行时,键通过pi状分子轨道发生。然而,取决于表面上N原子的位置,平面吸附构型可以松弛到垂直的几何形状。在Grimme提出的半经验方法的框架内,分析了范德华相互作用的长距离对吸附几何形状和能量的作用[J.计算化学27,1787(2006)]。我们证明了这些分散效应对于平面吸附构型的几何形状和电子结构非常重要。

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