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Self-assembly and Properties of Non-Metalled Tetraphenyl-Porphyrin on Metal Substrates

机译:金属基底上非金属四苯基卟啉的自组装及其性质

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摘要

The structure-electronic structure relationship of nonmetalated meso-tetraphenyl porphyrin (2H-TPP) on the (111) surfaces of Ag, Cu, and Au was studied with a combination of scanning tunneling microscopy, photoelectron spectroscopy, and density functional theory. We observe that the molecules form a 2D network on Ag(111), driven by attractive intermolecular interactions, while the surface migration barriers are comparatively small and the charge transfer to the adsorbed molecules is minimal. This is in contrast to a significant charge transfer observed in 2H-TPP/Cu(111), resulting in repulsive forces between the molecules that prevent molecular adlayer network formation. It is shown that the limiting factor in formation of self-organized networks is the nature of the frontier orbital overlap and the adsorbate-interface electron transfer. Further, the electronic structure, most notably the HOMO-LUMO splitting, are found to be dependent on the substrate as well. The comparison of the results in this article with published work on similar porphyrins suggests that the molecule-substrate interaction strength is determined by the molecules metalation, and not so much by the ligands. © 2010 American Chemical Society.
机译:结合扫描隧道显微镜,光电子能谱和密度泛函理论,研究了Ag,Cu和Au(111)表面非金属化的间四苯基卟啉(2H-TPP)的结构-电子结构关系。我们观察到,在有吸引力的分子间相互作用的驱动下,分子在Ag(111)上形成二维网络,而表面迁移势垒相对较小,电荷转移至吸附分子的可能性很小。这与在2H-TPP / Cu(111)中观察到的显着电荷转移形成对比,这导致分子之间的排斥力阻止了分子附加层网络的形成。结果表明,自组织网络形成的限制因素是边界轨道重叠和被吸附物界面电子转移的性质。此外,发现电子结构,最显着的是HOMO-LUMO分裂,也取决于衬底。本文中的结果与有关类似卟啉的已发表工作的比较表明,分子与底物的相互作用强度取决于分子的金属化程度,而不是取决于配体。 ©2010美国化学学会。

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