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扫描隧道显微镜成像研究邻氟苯硫酚和对氟苯硫酚在金(111)表面的自组装单分子层

STM imaging ortho- and para-fluorothiophenol self-assembled monolayers on Au(111).

作者信息

Jiang Peng, Deng Ke, Fichou Denis, Xie Si-Shen, Nion Aymeric, Wang Chen

机构信息

National Center for Nanoscience and Technology (NCNST), Beijing 100190, PR China.

出版信息

Langmuir. 2009 May 5;25(9):5012-7. doi: 10.1021/la803816u.

Abstract

Self-assembled monolayers (SAMs) of para- and ortho-fluorothiophenol (p- and o-FTP) spontaneously formed on Au(111) substrate have been contrasted through investigation by a scanning tunneling microscope (STM) at room temperature. High-resolution STM imaging reveals that p-FTP adopts a 6 x radical3R30 degrees molecule arrangement containing six molecules. Two different kinds of p-FTP molecule dimer line structures have been formed on Au(111) by intermolecular pi-pi stacking along 112 substrate directions, besides a single p-FTP molecule line. In contrast, o-FTP molecules self-assemble into a much looser wave-like SAM, which can be described as a 5 x 3 radical3R30 degrees structure containing two molecules. Periodic density functional theory (DFT) calculations for the two systems suggest that these kinds of FTP molecules preferentially take the asymmetrical positions between 3-fold face-centered cubic (fcc) hollow and bridge sites on Au(111), tilting from the substrate surface. Theoretical simulation gives apparent average tilted angles of 58 degrees and 68 degrees for p-FTP and o-FTP with respect to the surface normal, respectively. This simulation shows that o-FTP is more inclined to lie down toward the Au(111) surface compared to p-FTP. The difference between p-FTP and o-FTP SAM structures can be qualitatively understood in terms of the variation of intermolecular dipole-dipole orientation. This suggests that, besides well-known Au-S and pi-pi interactions, electrostatic interactions including dipole-dipole, quadrupole-quadrupole, and dipole-quadrupole interactions might also play an important role in influencing the SAM structures formed by aromatic thiols with a permanent dipole moment.

摘要

通过在室温下利用扫描隧道显微镜(STM)进行研究,对比了在金(111)衬底上自发形成的对氟苯硫酚(p-FTP)和邻氟苯硫酚(o-FTP)的自组装单分子层(SAMs)。高分辨率STM成像显示,p-FTP采用包含六个分子的6×√3R30°分子排列。除了单个p-FTP分子线外,通过沿衬底112方向的分子间π-π堆积,在金(111)上形成了两种不同类型的p-FTP分子二聚体线结构。相比之下,o-FTP分子自组装成一种更为松散的波浪状SAM,可描述为包含两个分子的5×3√3R30°结构。对这两个体系的周期性密度泛函理论(DFT)计算表明,这类FTP分子优先占据金(111)上3重面心立方(fcc)中空和桥位之间的不对称位置,并从衬底表面倾斜。理论模拟给出p-FTP和o-FTP相对于表面法线的表观平均倾斜角分别为58°和68°。该模拟表明,与p-FTP相比,o-FTP更倾向于向金(111)表面平躺。p-FTP和o-FTP SAM结构之间的差异可以根据分子间偶极-偶极取向的变化进行定性理解。这表明,除了众所周知的金-硫键和π-π相互作用外,包括偶极-偶极、四极-四极和偶极-四极相互作用在内的静电相互作用,在影响由具有永久偶极矩的芳香硫醇形成的SAM结构方面,可能也起着重要作用。

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