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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Silver-Gold Nanocomposite Substrates for Metal-Enhanced Fluorescence: Ensemble and Single-Molecule Spectroscopic Studies
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Silver-Gold Nanocomposite Substrates for Metal-Enhanced Fluorescence: Ensemble and Single-Molecule Spectroscopic Studies

机译:用于金属增强荧光的银-金纳米复合材料基底:集成和单分子光谱研究

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In recent years, there has been a growing interest in the studies involving the interactions of fiuorophores with plasmonic nanostructures or nanoparticles. These interactions lead to several favorable effects such as increase in the fluorescence intensities, increased photostabilities, and reduced excited-state lifetimes that can be exploited to improve the capabilities of present fluorescence methodologies. In this regard, we report the use of newly developed silver—gold nanocomposite (Ag—Au— NC) structures as substrates for metal-enhanced fluorescence (MEF). The Ag-Au-NC substrates have been prepared by a one-step galvanic replacement reaction from thin silver films coated on glass slides. This approach is simple and suitable for the fabrication of MEF substrates with large area. We have observed about 15-fold enhancement in the fluorescence intensity of ATT0655 from ensemble fluorescence measurements using these substrates. The fluorescence enhancement on the Ag—Au—NC substrates is also accompanied by a reduction in the fluorescence lifetime of ATT0655, which is consistent with the fluorophore—plasmon coupling mechanism. Single-molecule fluorescence measurements have been performed to gain more insight into the metal—fluorophore interactions and to unravel the heterogeneity in the interaction of individual fiuorophores with the fabricated substrates. The single-molecule studies are in good agreement with the ensemble measurements and show maximum enhancements of ~50-fold for molecules located in proximity to the "hotspots" on the substrates. In essence, the Ag—Au—NC substrates have a very good potential for various MEF applications.
机译:近年来,人们对涉及荧光团与等离子体纳米结构或纳米粒子相互作用的研究越来越感兴趣。这些相互作用导致几种有利的作用,例如荧光强度的增加,光稳定性的增加和激发态寿命的降低,这些可被利用来改善当前荧光方法的能力。在这方面,我们报告了使用新开发的银-金纳米复合材料(Ag-Au-NC)结构作为金属增强荧光(MEF)的底物。 Ag-Au-NC基材是通过一步电的置换反应从涂在载玻片上的银薄膜上制备的。这种方法很简单,适用于大面积MEF基板的制造。我们已经从使用这些底物的整体荧光测量中观察到ATT0655的荧光强度提高了约15倍。 Ag-Au-NC底物上的荧光增强还伴随着ATT0655荧光寿命的减少,这与荧光团-等离子体激元耦合机理是一致的。已经进行了单分子荧光测量,以获得对金属-荧光团相互作用的更多了解,并揭示了各个荧光团与已加工基底之间相互作用的异质性。单分子研究与总体测量结果非常吻合,显示出位于底物上“热点”附近的分子最大增强了约50倍。本质上,Ag-Au-NC衬底在各种MEF应用中具有非常好的潜力。

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