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首页> 外文期刊>ACS nano >Resonant Plasmonic Enhancement of Single-Molecule Fluorescence by Individual Gold Nanorods
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Resonant Plasmonic Enhancement of Single-Molecule Fluorescence by Individual Gold Nanorods

机译:单个金纳米棒的共振等离子体增强单分子荧光。

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Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-molecule fluorescence imaging to many unexplored systems. Here we study fluorescence enhancement by isolated gold nanorods and explore the role of the surface plasmon resonance (SPR) on the observed enhancements. Gold nanorods can be cheaply synthesized in large volumes, yet we find similar fluorescence enhancements as literature reports on lithographically fabricated nanoparticle assemblies. The fluorescence of a weak emitter, crystal violet, can be enhanced more than 1000-fold by a single nanorod with its SPR at 629 nm excited at 633 nm. This strong enhancement results from both an excitation rate enhancement of ~130 and an effective emission enhancement of ~9. The fluorescence enhancement, however, decreases sharply when the SPR wavelength moves away from the excitation laser wavelength or when the SPR has only a partial overlap with the emission spectrum of the fluorophore. The reported measurements of fluorescence enhancement by 11 nanorods with varying SPR wavelengths are consistent with numerical simulations.
机译:增强弱发射体的荧光对于将单分子荧光成像的范围进一步扩展到许多未开发的系统非常重要。在这里,我们研究了孤立的金纳米棒的荧光增强作用,并探讨了表面等离振子共振(SPR)对观察到的增强作用。金纳米棒可以廉价地大量合成,但是我们发现与平版印刷纳米粒子组件的文献报道类似的荧光增强。单个纳米棒在633 nm处激发629 nm处的SPR时,可以将弱发射体(结晶紫)的荧光增强1000倍以上。这种强烈的增强是由于激发速率增强了〜130,有效发射增强了〜9。然而,当SPR波长远离激发激光波长时或当SPR与荧光团的发射光谱仅部分重叠时,荧光增强急剧下降。报道的11种纳米棒在不同SPR波长下的荧光增强测量结果与数值模拟一致。

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