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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Structural and electronic properties of Na/Cu(111) at different coverages by first principles
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Structural and electronic properties of Na/Cu(111) at different coverages by first principles

机译:Na / Cu(111)在不同覆盖率下的结构和电子性质

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Nanostructures are presently enjoying an increasing interest in the field of materials science. In particular, importance is given to ordered monolayers prepared by deposition of atoms on a crystalline surface. The growth of these superlattices can be controlled so as to obtain an ordered structure by means of the lateral interaction of adatoms lying on the metal surface. The objective of our study is to investigate the structural and electronic properties using DFT total-energy calculations; we employ a jellium-like model to describe the substrate but we also take into account the presence of discrete surface states that are known to affect the lateral interaction. Our treatment of the substrate is based on the model proposed by E.V. Chulkov et al. [Surf. Sci. 437, 330 (1999)]; in this model one constructs a mono-dimensional potential so as to reproduce some important electronic properties of the metal surface, such as i) the energy gap in the projected bulk band-structure and ii) the energy position of surface states. We put into practice Chulkov potential implementing into an existing plane-waves code (ABINIT, URL http://www.abinit.org) an ionic potential, so as to obtain a self-consistent Kohn-Sham effective potential which corresponds to the Chulkov one. Using this effective potential in a fully three-dimensional code we are able to study the adsorption process and the interaction between adsorbates. We illustrate some details of our implementation of the Chulkov model and we present our results about the simple system of Na adatoms on a Cu(111) surface for different coverages. In particular, we compare electronic properties and adsorption energies with those obtained within a standard jellium model substrate and with those obtained for Na adsorption on a realistic Cu(111) surface.
机译:纳米结构目前在材料科学领域中越来越受到关注。特别地,重视通过原子在晶体表面上沉积而制备的有序单层。可以控制这些超晶格的生长,以便借助位于金属表面上的原子的横向相互作用获得有序结构。我们研究的目的是使用DFT总能量计算来研究结构和电子性能。我们采用了类似凝胶的模型来描述基底,但是我们也考虑到了离散表面状态的存在,这些状态已知会影响横向相互作用。我们对基材的处理是基于E.V. Chulkov等。 [冲浪。科学437,330(1999)];在该模型中,人们构造了一维电势以重现金属表面的一些重要电子特性,例如:i)投影体能带结构中的能隙,以及ii)表面态的能级。我们将库尔科夫电势付诸实践,在现有的平面波代码(ABINIT,URL http://www.abinit.org)中实现了离子电势,从而获得了与库尔科夫相对应的自洽Kohn-Sham有效电势一。在完整的三维代码中使用此有效电位,我们能够研究吸附过程以及被吸附物之间的相互作用。我们举例说明了我们执行Chulkov模型的一些细节,并给出了有关Cu(111)表面上不同覆盖率的Na原子简单系统的结果。尤其是,我们将电子性能和吸附能与在标准凝胶模型基板内获得的电子性质和吸附能进行比较,并与在实际Cu(111)表面上进行Na吸附获得的那些进行比较。

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