Matos Jeronimo, Rojas Tomas, Yildirim Handan, Kara Abdelkader
Department of Physics, University of Central Florida, Orlando, Florida, 32816, USA.
J Chem Phys. 2014 Apr 14;140(14):144703. doi: 10.1063/1.4870459.
The adsorption characteristics of the sexithiophene (6T) molecule on Ag(110) are studied using density functional theory with the inclusion of van der Waals (vdW) interactions. The stable adsorption configurations on 6T on Ag(110) as well as the nature of bonding the Ag substrate are evaluated. We also assess the performance of the vdW-DF method in describing the adsorption, energetics, heights, as well as the interface characteristics with the Ag(110) surface. We find two lowest adsorption energy configurations, at which the 6T molecule aligns with its molecular long axis parallel and perpendicular to the [001] direction, to be energetically close to each other, suggesting that they may coexist. Our findings indicate a significant increase in the 6T adsorption energies upon the inclusion of vdW interactions with the highest increase obtained using the opt-type functionals, in particular with the optB86b-vdW functional. The revPBE-vdW and rPW86-vdW2 functionals lead to less enhancement in adsorption energies that is attributed to the strong repulsive nature of these functionals, in agreement with earlier predictions. Upon adsorption of the 6T molecule, the changes in the atomic and electronic structures of the 6T molecule and Ag surface are found to be negligible; there is no charge transfer, and no interface state is observed. The work function is reduced upon adsorption with the largest change is ~0.6 eV obtained using the optB88-vdW functional. The results are in good agreement with the available experimental observations of the adsorption configurations and the work function changes. Based on our results, we conclude that the nature of bonding for 6T on Ag(110) can be classified as strong physisorption.
采用包含范德华(vdW)相互作用的密度泛函理论研究了六噻吩(6T)分子在Ag(110)上的吸附特性。评估了6T在Ag(110)上的稳定吸附构型以及与Ag衬底的键合性质。我们还评估了vdW-DF方法在描述吸附、能量、高度以及与Ag(110)表面的界面特性方面的性能。我们发现两个最低吸附能构型,在这两个构型中6T分子的分子长轴分别平行和垂直于[001]方向排列,它们在能量上彼此接近,表明它们可能共存。我们的研究结果表明,包含vdW相互作用后6T的吸附能显著增加,使用opt型泛函获得的增加量最大,特别是optB86b-vdW泛函。revPBE-vdW和rPW86-vdW2泛函导致吸附能的增强较少,这归因于这些泛函的强排斥性质,与早期预测一致。6T分子吸附后,发现6T分子和Ag表面的原子结构和电子结构变化可忽略不计;没有电荷转移,也未观察到界面态。吸附后功函数降低,使用optB88-vdW泛函获得的最大变化约为0.6 eV。结果与吸附构型和功函数变化的现有实验观察结果吻合良好。基于我们的结果,我们得出结论,6T在Ag(110)上的键合性质可归类为强物理吸附。