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Sulforhodamine Adsorbed Langmuir-Blodgett Layers on Silver Island Films: Effect of Probe Distance on the Metal-Enhanced Fluorescence

机译:银岛薄膜上磺胺丁胺吸附的Langmuir-Blodgett层:探针距离对金属增强荧光的影响

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摘要

Metal-Enhanced Fluorescence (MEF) has become an important method in biomedical sensing. In this paper, we present the distance-dependent MEF of sulforhodamine B (SRB) monolayer on silver island films (SIFs). SRB is electrostatically incorporated into the Langmuir-Blodgett (LB) layers of octadecylamine (ODA) deposited on glass and SIFs substrates. The distances between SRB and SIFs or glass surfaces are controlled by depositing a varied number of inert stearic acid (SA) spacer layers. SRB is incorporated into positively charged LB layers of ODA by immersing the ODA deposited substrates into aqueous solution of SRB. Dye incorporated ODA layers with 10 nm separation distance from the SIFs surface show maximum metal-enhanced fluorescence intensity; ~7-fold increase in intensity as compared to that from the glass surface. The corresponding enhancement factor is reduced with increasing or decreasing the probe distance from the SIFs surface. Additionally, SRB on SIF surfaces show reduced lifetimes. We observed the shortest lifetime from the SRB with 5 nm distance from the SIF surfaces and the lifetime increased consistently with increasing the distances between the fluorophore and the SIFs surface. These observed spectral changes, increase in fluorescence intensity and decreased fluorescence lifetimes, are in accordance with the expected effects due to near-field interactions between the silver nanoparticles and fluorophores. We have also analyzed the complex fluorescence heterogeneous decays on metallic nanostructured surfaces using continuous distributions of decay times. The decay-time distributions appear to be sensitive to the distance between the metal and fluorophore and represent the underlying heterogeneity of the samples. The present systematic study provides significant information on the effect of fluorophore distance on the metal-enhanced fluorescence phenomenon.
机译:金属增强荧光(MEF)已成为生物医学传感中的一种重要方法。在本文中,我们介绍了银岛薄膜(SIF)上磺基若丹明B(SRB)单层的距离依赖性MEF。将SRB静电结合到沉积在玻璃和SIF基板上的十八烷基胺(ODA)的Langmuir-Blodgett(LB)层中。通过沉积各种数量的惰性硬脂酸(SA)间隔层,可以控制SRB与SIF或玻璃表面之间的距离。通过将ODA沉积的基材浸入SRB的水溶液中,将SRB掺入到带正电的ODA LB层中。染料掺入的ODA层与SIF表面的分离距离为10 nm,显示出最大的金属增强荧光强度。与玻璃表面相比,强度增加了约7倍。随着与SIFs表面的探针距离的增加或减小,相应的增强因子会减小。此外,SIF表面上的SRB寿命缩短。我们观察到与SIF表面之间的距离为5 nm,SRB的寿命最短,并且随着荧光团与SIFs表面之间距离的增加,寿命不断增加。这些观察到的光谱变化,荧光强度的增加和荧光寿命的减少,与预期的效果是一致的,这是由于银纳米颗粒和荧光团之间的近场相互作用所引起的。我们还使用衰减时间的连续分布分析了金属纳米结构表面上的复杂荧光异质衰减。衰变时间分布似乎对金属和荧光团之间的距离敏感,并且代表了样品的潜在异质性。本系统的研究提供了有关荧光距离对金属增强荧光现象的影响的重要信息。

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