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Annealed Silver-Island Films for Applications in Metal-Enhanced Fluorescence: Interpretation in Terms of Radiating Plasmons

机译:用于金属增强荧光的退火银岛膜:关于辐射等离激元的解释

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摘要

The effects of thermally annealed silver island films have been studied with regard to their potential applicability in applications of metal-enhanced fluorescence, an emerging tool in nano-biotechnology. Silver island films were thermally annealed between 75 and 250°C for several hours. As a function of both time and annealing temperature, the surface plasmon band at ≈420 nm both diminished and was blue shifted. These changes in plasmon resonance have been characterized using both absorption measurements, as well as topographically using Atomic Force Microscopy. Subsequently, the net changes in plasmon absorption are interpreted as the silver island films becoming spherical and growing in height, as well as an increased spacing between the particles. Interestingly, when the annealed surfaces are coated with a fluorescein-labeled protein, significant enhancements in fluorescence are osbserved, scaling with annealing temperature and time. These observations strongly support our recent hypothesis that the extent of metal-enhanced fluorescence is due to the ability of surface plasmons to radiate coupled fluorophore fluorescence. Given that the extinction spectrum of the silvered films is comprised of both an absorption and scattering component, and that these components are proportional to the diameter cubed and to the sixth power, respectively, then larger structures are expected to have a greater scattering contribution to their extinction spectrum and, therefore, more efficiently radiate coupled fluorophore emission. Subsequently, we have been able to correlate our increases in fluorescence emission with an increased particle size, providing strong experiment evidence for our recently reported metal-enhanced fluorescence, facilitated by radiating plasmons hypothesis.
机译:已经研究了热退火银岛薄膜在金属增强的荧光(纳米生物技术中的新兴工具)的应用中的潜在适用性。将银岛薄膜在75至250°C的温度下热退火几个小时。随时间和退火温度的变化,≈420nm的表面等离激元能带都减小并且发生蓝移。等离子体吸收共振的这些变化已经使用吸收测量以及使用原子力显微镜在地形上进行了表征。随后,等离激元吸收的净变化被解释为银岛薄膜变成球形并在高度上增长,以及颗粒之间的间距增加。有趣的是,当退火的表面涂有荧光素标记的蛋白质时,观察到荧光的显着增强,随退火温度和时间而缩放。这些观察结果强烈支持我们最近的假说,即金属增强的荧光的程度是由于表面等离子体激元辐射耦合的荧光团荧光的能力所致。假设镀银薄膜的消光光谱既包含吸收成分又包含散射成分,并且这些成分分别与立方直径和六次方成正比,则可以预期较大的结构对其散射贡献更大。消光光谱,因此可以更有效地辐射耦合的荧光团发射。随后,我们已经能够将荧光发射的增加与粒径的增加相关联,从而为我们最近报道的通过辐射等离子体激元假说促进的金属增强荧光提供了有力的实验证据。

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