首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Pure and mixed ordered monolayers of tetracyano-26-naphthoquinodimethane and hexathiapentacene on the Ag(100) surface
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Pure and mixed ordered monolayers of tetracyano-26-naphthoquinodimethane and hexathiapentacene on the Ag(100) surface

机译:Ag(100)表面上的四氰基26-萘醌二甲烷和六硫杂并五苯的纯净和混合有序单层

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摘要

We report on mixed ordered monolayers of the electron acceptor-type molecule tetracyano>-2,6>-naphthoquinodimethane (TNAP) and the electron donor-type molecule hexathiapentacene (HTPEN). This investigation was motivated by the general question which type of mixed stoichiometric structures are formed on a surface by molecules that are otherwise typically used for the synthesis of bulk charge-transfer materials. The layers were obtained by vacuum deposition on the Ag(100) surface and analyzed by low-energy electron diffraction (LEED) and scanning tunneling microscopy (STM). The formation of the mixed structure occurs spontaneously. An important motif for the structure formation is given by hydrogen bonds between the TNAP molecules. Both molecules, TNAP and HTPEN also form well-ordered monolayers on the Ag(100) surface on their own. In all structures, the molecules are adsorbed in a planar orientation on the surface. We discuss the influence of intermolecular charge transfer on the ordering in the mixed structure.
机译:我们报告了电子受体型分子四氰基>- 2,6 >-萘醌二甲烷(TNAP)和电子供体型分子六硫杂并五苯(HTPEN)的混合有序单层。这项研究是由一个普遍的问题激发的,即在表面上哪种混合化学计量结构类型是由分子形成的,这些分子原本通常用于合成大量电荷转移材料。通过真空沉积在Ag(100)表面获得这些层,并通过低能电子衍射(LEED)和扫描隧道显微镜(STM)进行分析。混合结构的形成是自然发生的。 TNAP分子之间的氢键为结构形成提供了重要的基元。 TNAP和HTPEN这两个分子也各自在Ag(100)表面上形成有序的单层。在所有结构中,分子均以平面方向吸附在表面上。我们讨论了分子间电荷转移对混合结构中有序化的影响。

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