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STM fluorescence of porphyrin enhanced by a strong plasmonic field and its nanoscale confinement in an STM cavity

机译:强等离子体场增强卟啉的STM荧光及其在STM腔中的纳米级约束

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摘要

We have investigated scanning tunneling microscope-induced luminescence (STML) from porphyrin molecules by varying the tip (PtIr, Ag, and Au)/substrate (Pt, Ag, Au, and indium tin oxide) combinations. Strong molecular fluorescence by highest-occupied molecular orbital and lowest-unoccupied molecular orbital transition comparable to plasmon-mediated light is emitted only when both the substrate and the tip are metals but not in other cases. Along with calculations of relative electromagnetic-field powers in the tip-substrate gaps, the enhancement of STML from molecules can be interpreted in terms of the strong plasmon field and its confinement in an STM cavity. We also find rather strong energy-forbidden fluorescence of porphyrin in an Au-tip/porphyrin/Au cavity that occurs under the extremely strong field in the plasmonic nanocavity.
机译:我们已经研究了通过改变尖端(PtIr,Ag和Au)/基质(Pt,Ag,Au和铟锡氧化物)的组合,从卟啉分子中扫描隧道显微镜诱导的发光(STML)。仅当基质和尖端均为金属时,才发射与等离子体激元介导的光相当的由最高占据的分子轨道和最低的未被占据的分子轨道跃迁产生的强分子荧光。连同尖端衬底间隙中的相对电磁场功率的计算,可以根据强等离激元场及其在STM腔中的限制来解释分子对STML的增强作用。我们还发现,在等离子体纳米腔的极强场下,Au-tip /卟啉/ Au腔中的卟啉具有很强的能量禁能荧光。

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