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Preparationof Plasmonic Platforms of Silver Wires on Gold Mirrors and Their Applicationto Surface Enhanced Fluorescence

机译:制备镜上银丝等离子平台的制备及其应用表面增强荧光

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摘要

In this report we describe a preparation of silver wires (SWs) on gold mirrors and its application to surface enhanced fluorescence (SEF) using a new methodology. Silica protected gold mirrors were drop-coated with a solution of silver triangular nanoprisms. The triangular nanoprisms were slowly air-dried to get silver wires that self-assembled on the gold mirrors. Fluorescence enhancement was studied using methyl azadioxatriangulenium chloride (Me-ADOTA·Cl) dye in PVA spin-coated on a clean glass coverslip. New Plasmonic Platforms (PPs) were assembled by placing a mirror with SWs in contact with a glass coverslip spin-coated with a uniform Me-ADOTA·Cl film. It was shown that surface enhanced fluorescence is a real phenomenon, not just an enhancement of the fluorescence signal due to an accumulation of the fluorophore on rough nanostructure surfaces. The average fluorescence enhancement was found to be about 15-fold. The lifetime of Me-ADOTA·Cl dye was significantly reduced (∼4 times) in the presence of SWs. Moreover, fluorescence enhancement and lifetime did not show any dependence on the excitationlight polarization.
机译:在本报告中,我们描述了使用新方法在金镜上制备银线(SW)及其在表面增强荧光(SEF)中的应用。二氧化硅保护的金镜面用银三角纳米棱镜溶液滴涂。将三角形纳米棱镜缓慢风干,以获得在金镜上自动组装的银线。使用甲基氮杂二氧三triangulenium chloride(Me-ADOTA·Cl)染料旋涂在干净的玻璃盖玻片上的PVA中研究了荧光增强作用。通过放置带有SW的镜子与旋涂有均匀Me-ADOTA·Cl膜的玻璃盖玻片接触,组装新的等离子平台(PPs)。已经表明,表面增强的荧光是一种真实的现象,不仅仅是由于荧光团在粗糙的纳米结构表面上的积累而导致的荧光信号增强。发现平均荧光增强为约15倍。在存在SW的情况下,Me-ADOTA·Cl染料的寿命显着降低(约4倍)。此外,荧光增强和寿命对激发没有任何依赖性。偏振光。

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