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首页> 外文期刊>Journal of Physics. Condensed Matter >Enhanced charge transfer in a monolayer of the organic charge transfer complex TTF-TNAP on Au(111)
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Enhanced charge transfer in a monolayer of the organic charge transfer complex TTF-TNAP on Au(111)

机译:Au(111)上有机电荷转移复合物TTF-TNAP单层中增强的电荷转移

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摘要

Electronic doping is a key concept for tuning the properties of organic materials. In bulk structures, the charge transfer between donor and acceptor is mainly given by the respective ionization potential and electron affinity. In contrast, monolayers of charge transfer complexes in contact with a metal are affected by an intriguing interplay of hybridization and screening at the metallic interface, determining the resulting charge state. Using scanning tunneling microscopy and spectroscopy, we characterize the electronic properties of the organic acceptor molecule 11,11,12,12-tetracyanonaptho-2,6- quinodimethane (TNAP) adsorbed on a Au(111) surface. The ordered islands remain in a weakly physisorbed state with no charge transfer interaction with the substrate. When the electron donor tetrathiafulvalene (TTF) is added, ordered arrays of alternating TNAP and TTF rows are assembled. In these structures, we find the lowest unoccupied molecular orbital (LUMO) of the free TNAP molecule shifted well below the Fermi level of the substrate. The TNAP is thus charged with more than one electron.
机译:电子掺杂是调节有机材料性能的关键概念。在本体结构中,施主和受主之间的电荷转移主要由各自的电离势和电子亲和力决定。相反,与金属接触的电荷转移络合物的单层受到金属界面上杂交和筛选的有趣相互作用的影响,从而确定了所得的电荷状态。使用扫描隧道显微镜和光谱学,我们表征了吸附在Au(111)表面上的有机受体分子11,11,12,12-tetracyanonaptho-2,6-quinodimethane(TNAP)的电子性质。有序岛保持弱的物理吸附状态,与底物之间没有电荷转移相互作用。当添加电子给体四硫富瓦烯(TTF)时,将交替排列TNAP和TTF行的有序阵列。在这些结构中,我们发现游离TNAP分子的最低未占据分子轨道(LUMO)远低于底物的费米能级。 TNAP因此带有一个以上的电子。

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