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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Molecular self assembly and chiral recognition of copper octacyanophthalocyanine on Au(111): Interplay of intermolecular and molecule-substrate interactions.
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APS -APS March Meeting 2017 - Event - Molecular self assembly and chiral recognition of copper octacyanophthalocyanine on Au(111): Interplay of intermolecular and molecule-substrate interactions.

机译:APS -APS 2017年3月会议-活动-八甲基氰酞菁铜在Au(111)上的分子自组装和手性识别:分子间和分子与底物相互作用的相互作用。

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摘要

Submolecular resolution scanning tunneling microscopy (STM) of copper octacyanophthalocyanine, CuPc(CN)$_{mathrm{8}}$, at 77 K demonstrates that these achiral molecules form a two dimensional (2D) tetramer-based self-assembly upon evaporation onto an atomically flat Au(111) substrate. They assemble in two different structurally chiral configurations upon adsorption on Au(111). Scanning tunneling spectroscopy (STS),acquired at 77 K, unveils the HOMO and LUMO energy levels of this self-assembly. Voltage dependent STM images show that each molecule in both the structurally chiral configurations individually becomes chiral by breaking the mirror symmetry due to the enhanced intermolecular dipolar coupling interaction at the LUMO energy while the individual molecules remain achiral at the HOMO energy and within the HOMO-LUMO gap. At the LUMO energy, the handedness of the each chiral molecule is decided by the direction of the dipolar coupling interaction in the tetramer unit cell. This preference for LUMO energy indicates that this chirality is purely electronic in nature and it manifests on top of the organizational chirality that is present in the self-assembly independent of the orbital energy.
机译:八氰基铜酞菁铜CuPc(CN)$ _ {mathrm {8}} $在77 K时的亚分子分辨率扫描隧道显微镜(STM)表明,这些非手性分子在蒸发到四氟乙烯时会形成基于二维(2D)四聚体的自组装原子平坦的Au(111)衬底。它们在Au(111)上吸附后以两种不同的手性结构组装。在77 K处获得的扫描隧道光谱(STS)揭示了这种自组装体的HOMO和LUMO能级。电压依赖性STM图像显示,由于在LUMO能量下增强的分子间偶极耦合相互作用,打破了分子的对称性,两种结构手性构型中的每个分子都变得手性,而单个分子在HOMO能量和HOMO-LUMO内保持非手性间隙。在LUMO能量下,每个手性分子的旋向性由四聚体晶胞中偶极偶合相互作用的方向决定。这种对LUMO能量的偏爱表明,该手性本质上是纯电子的,它表现在自组装中存在的组织手性之上,而该手性与轨道能量无关。

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