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Fluorescence Enhancement Using Bimetal Surface Plasmon-Coupled Emission from 5-Carboxyfluorescein (FAM)

机译:使用5-羧基荧光素(FAM)的双金属表面等离子体偶联排放荧光增强

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摘要

We demonstrate the enhancement of fluorescence emission from a dye, 5-carboxyfluorescein (FAM), which couples with surface plasmons at the spectral channels of excitation and emission. Experiments and calculations revealed that bimetallic (gold-silver) plasmon, as compared to the monometallic ones, allowed such coupling to be enhanced, at both the spectral channels. We achieved the maximum fluorescence enhancement level of 46.5-fold, with markedly high reproducibility (coefficient of variation ~ 0.5%) at a FAM concentration of 10 nM. We also found that higher fluorescence enhancement was more likely to be reproducible. This encourages the use of this technology for practical applications in fluorescence-based biochemical assays. Moreover, we investigated a FAM concentration-dependent enhancement of fluorescence. It was found that fluorescence enhancement decreased and saturated at above 10 nM concentration possibly due to partial photo-bleaching of FAM molecules.
机译:我们证明了从染料,5-羧基荧光素(FAM)的荧光发射的增强,其在激发和排放的光谱通道上与表面等离子体耦合。实验和计算揭示了与单金属材料相比的双金属(金银)等离子体,允许在光谱通道上增强这种耦合。我们达到了46.5倍的最大荧光增强水平,在10nm的Fam浓度下具有明显高的再现性(变异系数〜0.5%)。我们还发现更高的荧光增强更可能是可重复的。这鼓励这种技术用于基于荧光的生化测定中的实际应用。此外,我们研究了荧光的FAM浓度依赖性增强。发现荧光增强由于FAM分子的部分光漂白而在高于10nm浓度下降低和饱和。

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