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Localized plasmon-engineered spontaneous emission of CdSe/ZnS nanocrystals closely-packed in the proximity of Ag nanoisland films for controlling emission linewidth, peak, and intensity

机译:CdSe / ZnS纳米晶体的局部等离激元工程自发发射紧密堆积在Ag纳米岛薄膜附近,以控制发射线宽,峰和强度

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摘要

Using metallic nanoislands, we demonstrate the localized plasmonic control and modification of the spontaneous emission from closely-packed nanocrystal emitters, leading to significant changes in their collective emission characteristics tuned spectrally and spatially by plasmon coupling. Using randomly-distributed silver nanoislands, we show that the emission linewidth of proximal CdSe/ZnS core-shell quantum dots is reduced by 22% and their peak emission wavelength is shifted by 14nm, while their ensemble photoluminescence is enhanced via radiative energy transfer by 21.6 and 15.1 times compared to the control groups of CdSe/ZnS nanocrystals with identical nano-silver but no dielectric spacer and the same nanocrystals alone, respectively. ©2007 Optical Society of America.
机译:使用金属纳米岛,我们展示了紧密堆积的纳米晶体发射器的自发发射的局部等离激元控制和修改,从而导致了通过等离激元耦合在光谱和空间上调谐的集体发射特性发生了显着变化。使用随机分布的银纳米岛,我们发现近端CdSe / ZnS核壳量子点的发射线宽减小了22%,峰值发射波长移动了14nm,而它们的整体光致发光通过辐射能量转移而增强了21.6。与具有相同纳米银但没有介电间隔物的CdSe / ZnS纳米晶体的对照组相比,分别具有15.1倍和15.1倍的纳米晶体。 ©2007美国眼镜学会。

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