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并五苯在改性及纳米图案化铜表面的取向、电子去耦和能带色散

Orientation, electronic decoupling and band dispersion of heptacene on modified and nanopatterned copper surfaces.

作者信息

Boné Thomas, Windischbacher Andreas, Scheucher Lukas, Presel Francesco, Schnabl Paul, Wagner Marie S, Bettinger Holger F, Peisert Heiko, Chassé Thomas, Puschnig Peter, Ramsey Michael G, Sterrer Martin, Koller Georg

机构信息

Institute of Physics, University of Graz, NAWI Graz, Universitätsplatz 5, 8010 Graz, Austria.

Institute of Physical and Theoretical Chemistry, University of Tübingen, 72076 Tübingen, Germany.

出版信息

J Phys Condens Matter. 2023 Aug 31;35(47). doi: 10.1088/1361-648X/acf105.

Abstract

The adsorption of heptacene (7 A) on Cu(110) and Cu(110)-(2 × 1)-O was studied with scanning tunneling microscopy, photoemission orbital tomography and density functional calculations to reveal the influence of surface passivation on the molecular geometry and electronic states. We found that the charge transfer into the 7 A molecules on Cu(110) is completely suppressed for the oxygen-modified Cu surface. The molecules are aligned along the Cu-O rows and uncharged. They are tilted due to the geometry enforced by the substrate and the ability to maximize intermolecular π-π overlap, which leads to strong π-band dispersion. The HOMO-LUMO gap of these decoupled molecules is significantly larger than that reported on weakly interacting metal surfaces. Finally, the Cu-O stripe phase was used as a template for nanostructured molecular growth and to assess possible confinement effects.

摘要

利用扫描隧道显微镜、光发射轨道断层扫描和密度泛函计算研究了并七苯(7A)在Cu(110)和Cu(110)-(2×1)-O上的吸附,以揭示表面钝化对分子几何结构和电子态的影响。我们发现,对于氧修饰的铜表面,向Cu(110)上的7A分子的电荷转移被完全抑制。分子沿着Cu-O行排列且不带电。由于基底施加的几何结构以及最大化分子间π-π重叠的能力,它们发生倾斜,这导致了强烈的π带色散。这些解耦分子的HOMO-LUMO能隙明显大于在弱相互作用金属表面上报道的能隙。最后,Cu-O条纹相被用作纳米结构分子生长的模板,并用于评估可能的限制效应。

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