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首页> 外文期刊>Scientific reports. >Identifying the Assembly Configuration and Fluorescence Spectra of Nanoscale Zinc-Tetraphenylporphyrin Aggregates with Scanning Tunneling Microscopy
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Identifying the Assembly Configuration and Fluorescence Spectra of Nanoscale Zinc-Tetraphenylporphyrin Aggregates with Scanning Tunneling Microscopy

机译:用扫描隧道显微镜识别纳米级锌 - 四苯基卟啉聚集体的组装配置和荧光光谱

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摘要

ZnTPP (Zinc-Tetraphenylporphyrin) is one of the most common nanostructured materials, having high stability and excellent optoelectronic properties. In this paper, the fluorescence features of self-assembled ZnTPP monomers and aggregates on Au(111) surface are investigated in detail on the nanometer scale with scanning tunneling microscopy (STM). The formation of ZnTPP dimers is found in thick layers of a layer-by-layer molecular assembly on Au substrate with its specific molecular arrangement well characterized. Tip-induced luminescence shows a red shift from tilted dimers comparing with the behavior from monomers, which can be attributed to the change of vibrational states due to the intermolecular interaction and the increasing dielectric effect. The nanoscale configuration dependence of electroluminescence is demonstrated to provide a powerful tool aiding the design of functional molecular photoelectric devices.
机译:ZnTPP(锌 - 四苯基卟啉)是具有高稳定性和优异的光电性质的最常见的纳米结构材料之一。在本文中,在纳米级与扫描隧道显微镜(STM)详细研究了Au(111)表面上的自组装ZnTPP单体和聚集体的荧光特征。 ZnTPP二聚体的形成在逐层分子组件的厚层上发现,其特定的分子布置得很好。尖端诱导的发光显示与倾斜二聚体的红色转变与单体的行为相比,这可以归因于由于分子间相互作用和增加的介电效应而造成振动状态的变化。对电致发光的纳米级配置依赖性被证明是提供一种强大的工具,帮助设计功能分子光电装置的设计。

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