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Luminescence Quantum Yields of Gold Nanoparticles Varying with Excitation Wavelength

机译:用激发波长改变金纳米颗粒的发光量子产率

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Luminescence quantum yields (QYs) of gold nanoparticles including nanorods, nanobipyramids and nanospheres are measured elaborately at single nanoparticle level with different excitation wavelengths. It is found that the QYs of the nanostructures are essentially dependent on the excitation wavelength. The QY is higher when the excitation wavelength is blue-detuned and close to the nanoparticles' surface plasmon resonant peak. A phenomenological model based on plasmonic resonator concept is proposed to understand the experimental findings. The excitation wavelength dependent of QY is attributed to the wavelength dependent coupling efficiency between the free electrons oscillation and the intrinsic plasmon resonant radiative mode. These studies should contribute to the understanding of one-photon luminescence from metallic nanostructures and plasmonic surface enhanced spectroscopy.
机译:在具有不同激发波长的单纳米颗粒水平下精心测量包括纳米棒,纳米吡酰胺和纳米球的金纳米颗粒的发光量子产率(qys)。发现纳米结构的Qys基本上取决于激发波长。当激发波长是蓝色 - 棘突和靠近纳米颗粒表面等离子体共振峰的时,Qy更高。提出了一种基于等离子体谐振器概念的现象学模型,了解实验结果。 Qy的激发波长归因于自由电子振荡和本征谐振辐射模式之间的波长依赖性耦合效率。这些研究应该有助于了解金属纳米结构和等离子体表面增强光谱的单光子发光。

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