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Spectral Selectivity of Plasmonic Interactions between Individual Up-Converting Nanocrystals and Spherical Gold Nanoparticles

机译:单个上转换纳米晶体和球形金纳米粒子之间的等离子相互作用的光谱选择性。

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摘要

We experimentally demonstrate strong spectral selectivity of plasmonic interaction that occurs between α-NaYF4:Er3+/Yb3+ nanocrystals, which feature two emission bands, and spherical gold nanoparticles, with plasmon frequency resonant with one of the emission bands. Spatially–resolved luminescence intensity maps acquired for individual nanocrystals, together with microsecond luminescence lifetime images, show two qualitatively different effects that result from the coupling between plasmon excitations in metallic nanoparticles and emitting states of the nanocrystals. On the one hand, we observe nanocrystals, whose emission intensity is strongly enhanced for both resonant and non-resonant bands with respect to the plasmon resonance. Importantly, this increase is accompanied with shortening of luminescence decays times. In contrast, a significant number of nanocrystals exhibits almost complete quenching of the emission resonant with the plasmon resonance of gold nanoparticles. Theoretical analysis indicates that such an effect can occur for emitters placed at distances of about 5 nm from gold nanoparticles. While under these conditions, both transitions experience significant increases of the radiative emission rates due to the Purcell effect, the non-radiative energy transfer between resonant bands results in strong quenching, which in that situation nullifies the enhancement.
机译:我们通过实验证明了在具有两个发射带的球形α-NaYF4:Er 3 + / Yb 3 + 纳米晶体与球形金纳米颗粒之间发生的等离子体相互作用的强光谱选择性,等离子体频率与发射频带之一共振。从单个纳米晶体获得的空间分辨的发光强度图以及微秒发光寿命图像,显示出两个定性不同的效应,这是金属纳米粒子中的等离激元激发与纳米晶体的发射态之间的耦合产生的。一方面,我们观察到纳米晶体,其相对于等离子体激元共振,共振和非共振带的发射强度都大大增强。重要的是,这种增加伴随着发光衰减时间的缩短。相反,大量的纳米晶体表现出几乎与金纳米颗粒的等离子体共振一样的发射共振的猝灭。理论分析表明,这种效应可能发生在与金纳米颗粒相距约5 nm处的发射器上。在这些条件下,由于珀塞尔效应,两个跃迁都经历了辐射发射速率的显着增加,而共振带之间的非辐射能量转移导致强烈的猝灭,在这种情况下,增强作用无效。

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