The formation of self-assembled domains and chains of monomolecular width of quinacridone (QA) on the vicinal Ag(35 1 1) surface was investigated by scanning tunneling microscopy and low-energy electron diffraction. The focus was on the influence of the steps on the QA structures and their preferential azimuthal orientations with the aim of achieving a selective orientation. After deposition at a sample temperature of 300 K, QA forms the same kind of molecular chains as on the nominally flat Ag(100) surface because of strong intermolecular hydrogen bonds, which we reported in a previous publication [Humberg, N.; Bretel, R.; Eslam, A.; Le Moal, E.; Sokolowski, M. J. Phys. Chem. C 2020, 124, 24861–24873]. The vicinal surface leads to one additional chain orientation, which is parallel to the Ag step edges. However, most chains nucleate on the Ag terraces between steps with four distinct azimuthal orientations that are identical to those on Ag(100), and which are determined by the interactions with the (100) surface. At 300 K, the chains grow across the Ag steps, which do not break the azimuthal chain orientations. In contrast, during the deposition at sample temperatures of 400 and 500 K, the nucleation of the chains takes place at the Ag step edges. Hence, these have a strong influence on the azimuthal orientation of the molecules, resulting in a preferential growth of the chains in two of the four azimuthal orientations. We explain this by the adaptation of favorable adsorption sites, which involve the replacement of Ag atoms by QA molecules with specific azimuthal orientations at the step edges.
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机译:通过扫描隧道显微镜和低能电子衍射研究了喹吖啶酮 (QA) 在附近 Ag(35 1 1) 表面形成的自组装结构域和单分子宽度链。重点是台阶对 QA 结构及其优先方位角方向的影响,以实现选择性取向。在 300 K 的样品温度下沉积后,由于强分子间氢键,QA 形成与标称平坦的 Ag(100) 表面相同类型的分子链,我们在之前的出版物中报道了这一点 [Humberg, N.;布雷特尔,R.;埃斯兰,A.;勒莫阿尔,E.;Sokolowski, MJ Phys. Chem. C 2020, 124, 24861–24873]。邻近表面通向一个额外的链条方向,该方向与 Ag 台阶边缘平行。然而,大多数链在台阶之间的 Ag 阶地上成核,具有四个不同的方位角方向,这些方向与 Ag(100) 上的方位角相同,并且由与 (100) 表面的相互作用决定。在 300 K 时,链在 Ag 阶梯上生长,这不会破坏方位链方向。相比之下,在 400 和 500 K 的样品温度下沉积期间,链的成核发生在 Ag 阶梯边缘。因此,这些对分子的方位角方向有很强的影响,导致链在四个方位角方向中的两个方向上优先生长。我们通过调整有利的吸附位点来解释这一点,这涉及到在阶梯边缘具有特定方位方向的 QA 分子取代 Ag 原子。
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