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单个等离子体激元间隙共振的荧光增强。

Fluorescence enhancement from individual plasmonic gap resonances.

机构信息

Max-Planck-Institute for Polymer Research, Ackermannweg 10-55128 Mainz, Germany.

出版信息

ACS Nano. 2010 Jun 22;4(6):3309-17. doi: 10.1021/nn901655v.

Abstract

We studied the fluorescence enhancement of a dye-loaded polyphenylene dendrimer in a gap of 2-3 nm between a silver film and single silver particles with an average diameter of 80 nm. This sphere-on-plane geometry provides a controllable plasmonic resonator with a defined dye position. A strong fluorescence signal was seen from all particles, which was at least 1000 times stronger than the signal from the plane dye-coated metal surface. The fluorescence emission profile varied between the particles and showed light emission at higher energies than the free dye, which we assigned to hot luminescence. The maximum fluorescence emission peak shifted along with the scattering maximum of the plasmonic resonance. Two classes of scattering resonators could be distinguished. Up to a significant line-broadening, the response of the "sphere-on-plane"-like cases resembled the theoretical prediction for a perfect sphere-on-plane geometry. Resonators which deviate strongly from this ideal scenario were also found. Electron microscopy did not show significant differences between these two classes, suggesting that the variations in the optical response are due to nanoscale variations of shape and roughness in the gap region. The strong modifications of the dye emission spectrum suggested the presence of physical mechanisms at very small metal/dye separations, which are beyond a simple wavelength-dependent enhancement factor.

摘要

我们研究了在银膜和平均直径为 80nm 的单个银粒子之间 2-3nm 的间隙中负载染料的聚亚苯基树枝状大分子的荧光增强。这种球-面结构提供了一个具有可控等离子体共振和明确染料位置的等离子体共振器。所有粒子都产生了很强的荧光信号,比平面染料涂覆金属表面的信号至少强 1000 倍。荧光发射轮廓在粒子之间有所不同,并显示出比自由染料更高能量的光发射,我们将其归因于热发光。最大荧光发射峰随等离子体共振的散射最大值一起移动。可以区分两类散射共振器。在显著的线宽增加之前,“球-面”样例的响应类似于完美球-面几何形状的理论预测。还发现了与理想情况强烈偏离的共振器。电子显微镜显示这两种情况之间没有明显的差异,这表明光学响应的变化是由于间隙区域的形状和粗糙度的纳米级变化。染料发射光谱的强烈修饰表明,在非常小的金属/染料分离距离处存在物理机制,这些机制超出了简单的波长相关增强因子。

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