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Coverage-dependent self-assembly of rubrene molecules on noble metal surfaces observed by scanning tunneling microscopy

机译:扫描隧道显微镜观察贵金属表面上红宝石分子的覆盖依赖性自组装

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摘要

Coverage-dependent self-assembly of rubrene molecules on different noble metal surfaces, Au(111) and Au(100), Ag(111) and Ag(100), is presented. On Au(111), the homochiral supramolecular assemblies evolve with increasing rubrene coverage from very small structures composed of a few molecules, to honeycomb islets, and to one-dimensional chains of supramolecular pentamers. At higher coverage, the racemic mixture of molecules forms close-packed islands. On Au(100), chains of pentamers and two different types of densely packed islands are formed. On the Ag surfaces, exclusively close-packed islands are created, independently of the rubrene coverage. Moreover, the role of the chiral nature of the molecules in the self-assembly process is discussed, as well as the existence of different molecular conformers depending on the supramolecular assembled phase. The observed differences and similarities reflect the influence of the electronic properties and the geometric structure of the various substrates on molecular self-assembly.
机译:提出了红宝石分子在不同贵金属表面Au(111)和Au(100),Ag(111)和Ag(100)上的覆盖率依赖性自组装。在Au(111)上,同手性超分子组装体随着红荧烯覆盖范围的增加而发展,其覆盖范围从由几个分子组成的非常小的结构,到蜂窝状的小岛,以及超分子五聚体的一维链。在更高的覆盖率下,外消旋的分子混合物形成了密排的岛。在Au(100)上形成五聚体链和两种不同类型的密集堆积岛。在Ag表面上,会创建单独的密排岛,而与红荧烯的覆盖率无关。此外,讨论了分子的手性性质在自组装过程中的作用,以及取决于超分子组装相的不同分子构象体的存在。观察到的差异和相似之处反映了各种基材的电子性能和几何结构对分子自组装的影响。

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