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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >First-principles study of the pentacene/Cu(111) interface: Adsorption states and vacuum level shifts
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First-principles study of the pentacene/Cu(111) interface: Adsorption states and vacuum level shifts

机译:并五苯/ Cu(111)界面的第一性原理研究:吸附态和真空能级变化

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摘要

We have studied the interaction of pentacene with a Cu(1 1 1) surface using density functional theory (DFT)within a generalized gradient approximation (GGA) and the van der Waals density functional [vdW-DF. M. Dion, H. Rydberg, E. Schroder, D.C. Langreth, B.I. Lundqvist, Phys. Rev. Lett. 92 (2004) 246401]. The adsorption energy is accurately predicted by vdW-DF, while the equilibrium distances between pentacene and the metal substrate (Z(C)) are overestimated by both GGA and vdW-DF. The work function changes depend significantly on Z(C). The experimental work function change can be Successfully reproduced by GGA if the experimentally reported adsorption geometry is used, whereas the magnitude of the work function change is underestimated if calculated adsorption geometries are applied. We examined the IDIS model I H. Vazquez, R. Qszwaldowski, R Pou, J. Ortega, R. Perez, F. Flores, A. Kahn, Europhys. Lett. 65 (2004) 802] to compare it with the GGA results. The interface dipoles estimated by the IDIS model fairly agree with the GGA results, provided that the adsorption distance is large. On the other hand, they tend to deviate from the GGA results as the adsorption distance becomes smaller, where back donation from the metal surface to the adsorbate occurs. Our analysis reveals that at experimentally reported metal-organic distance, back donation is significant enough to induce polarization of pentacene molecules perpendicular to the surface, which leads to a reduction of the work function. Thus, at the experimentally reported metal-organic distance, the work function change estimated by a simple IDIS model deviates from that calculated by self-consistent GGA calculations. We also found that at the experimentally reported metal-organic distance, the transferred electrons create weak chemical bonds between pentacene and the Cu(1 1 1) surface, illustrating the reactive nature of pentacene.
机译:我们已经使用密度泛函理论(DFT)在广义梯度近似(GGA)和范德华密度泛函[vdW-DF]中研究了并五苯与Cu(1 1 1)表面的相互作用。 M.Dion,H.Rydberg,E.Schroder,D.C.Langreth,B.I。 Lundqvist,物理学莱特牧师92(2004)246401]。 vdW-DF可以准确预测吸附能,而GGA和vdW-DF都高估了并五苯与金属基底(Z(C))之间的平衡距离。功函数的变化很大程度上取决于Z(C)。如果使用实验报告的吸附几何形状,则GGA可以成功复制实验功函数变化,而如果应用计算的吸附几何形状,功函数变化的幅度将被低估。我们检查了IDIS模型:I。H. Vazquez,R。Qszwaldowski,R Pou,J。Ortega,R。Perez,F。Flores,A。Kahn,Europhys。来吧65(2004)802]将其与GGA结果进行比较。只要吸附距离大,IDIS模型估计的界面偶极子与GGA结果完全吻合。另一方面,随着吸附距离变小,它们倾向于偏离GGA结果,这时会发生从金属表面到被吸附物的反向捐赠。我们的分析表明,在实验报告的金属-有机距离处,背向供体足以引起并五苯分子垂直于表面的极化,从而导致功函数降低。因此,在实验报告的金属有机距离下,通过简单的IDIS模型估算的功函数变化与通过自洽GGA计算得出的功函数变化有所偏差。我们还发现,在实验报告的金属有机距离下,转移的电子在并五苯与Cu(1 1 1)表面之间形成弱化学键,从而说明并五苯的反应性。

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