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Single molecule photophysics near metallic nanostructures

机译:金属纳米结构附近的单分子光物理

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摘要

Metal-enhanced fluorescence (MEF) is useful in single molecule detection (SMD) by increasing the photostability, brightness and increase in radiative decay rates of fluorophores. We have investigated MEF from an individual fluorophore tethered to a single silver nanoparticle and also a single fluorophore between a silver dimer. The fluorescence lifetime results revealed a near-field interaction mechanism of fluorophore with the metal particle. Finite-difference time-domain (FDTD) calculations were employed to study the distribution of electric field near the metal monomer and dimer. The coupling effect of metal particles on the fluorescence enhancement was studied. We have also investigated the photophysics of FRET near metal nanoparticles and our preliminary results suggest an enhanced FRET efficiency in the presence of a metal nanoparticle. In total, our results demonstrate improved detectability at the single molecule level for a variety of fluorophores and quantum dots in proximity to the silver nanoparticles due to the near-field metal-fluorophore interactions
机译:金属增强的荧光(MEF)可通过增加荧光团的光稳定性,亮度和辐射衰减率来用于单分子检测(SMD)。我们已经研究了从单个荧光团拴到单个银纳米颗粒以及在银二聚体之间的单个荧光团的MEF。荧光寿命结果揭示了荧光团与金属颗粒的近场相互作用机理。时域有限差分(FDTD)计算用于研究金属单体和二聚体附近的电场分布。研究了金属颗粒对荧光增强的耦合作用。我们还研究了金属纳米粒子附近的FRET的光物理性质,我们的初步结果表明,在金属纳米粒子的存在下,FRET的效率有所提高。总的来说,我们的结果表明,由于近场金属-荧光团的相互作用,对于银纳米颗粒附近的各种荧光团和量子点,在单分子水平上的可检测性得到了改善

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