表面等离子体增强荧光:准静态极限下的自洽经典处理。

IF 2.4 3区 化学 Q3 CHEMISTRY, ANALYTICAL
Dentcho A Genov
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引用次数: 0

摘要

在介质和金属界面附近增强分子发射的问题对于许多物理和生物应用具有重要意义。这里我们从经典电磁学的角度对这个问题提出了一个精确的处理方法。建立了表面增强荧光(SEF)的自一致分析理论,用于由靠近核壳金属介电纳米粒子的发射器组成的构型。研究了荧光增强与激发激光、荧光频率和发射器与纳米颗粒界面距离的关系。发展的理论预测在中距离处荧光增强,以及发射猝灭为非辐射表面等离子体(SP)模式,主导了短距离的响应。确定了两种核壳结构的最佳发射增强条件,并与已发表的实验数据进行了比较,结果表明理论与实验具有良好的一致性。所建立的模型可用于SP增强荧光光谱的各种应用分析和优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface plasmon enhanced fluorescence: self-consistent classical treatment in the quasi-static limit.

The problem of enhanced molecular emission in close proximity to dielectric and metallic interfaces is of great importance for many physical and biological applications. Here we present an exact treatment of the problem from the view point of classical electromagnetism. Self-consistent analytical theory of the surface enhanced fluorescence (SEF) is developed for configurations consisting of an emitter in proximity to core-shell metal-dielectric nanoparticles. The dependence of the fluorescence enhancement on the excitation laser and fluorescence frequencies and distance of the emitter to the nanoparticle interface are studied. The developed theory predicts enhanced fluorescence at intermediate distances as well as emission quenching into non-radiative surface plasmon (SP) modes dominating the response for short distances. The conditions for optimal emission enhancement for two core-shell configurations are determined and a comparison to published experimental data is performed showing a good correspondence between theory and experiment. The developed model can be applied toward analyzes and optimizations of various applications related to SP enhance fluorescence spectroscopy.

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来源期刊
Methods and Applications in Fluorescence
Methods and Applications in Fluorescence CHEMISTRY, ANALYTICALCHEMISTRY, PHYSICAL&n-CHEMISTRY, PHYSICAL
CiteScore
6.20
自引率
3.10%
发文量
60
期刊介绍: Methods and Applications in Fluorescence focuses on new developments in fluorescence spectroscopy, imaging, microscopy, fluorescent probes, labels and (nano)materials. It will feature both methods and advanced (bio)applications and accepts original research articles, reviews and technical notes.
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