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首页> 外文期刊>Small >Enhanced Upconversion Luminescence of Metal-Capped NaGd(0.3)Yb(0.7)F4:Er Submicrometer Particles
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Enhanced Upconversion Luminescence of Metal-Capped NaGd(0.3)Yb(0.7)F4:Er Submicrometer Particles

机译:金属封盖的NaGd(0.3)Yb(0.7)F4:Er亚微米颗粒的增强的上转换发光

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摘要

Metallic nanostructures are often used to enhance photoluminescence of nanomaterials based on local field enhancement with plasmons at metal surfaces. Here upconversion luminescence (UCL) enhancement of submicrometer-size NaGd0.3Yb0.7F4:Er particles in cap-like metal cavities, formed by deposition of a silver film on the particles dispersed on glass substrates, is studied. UCL of the particles is shown to be influenced by not only the plasmon-enhanced local field but also the cavity modes. By varying the cavity size and location of the particles in the cavities, fluctuant variations of the UCL enhancement and electronic depopulation rate are observed in experiments. Typically, a maximum of 12-fold enhancement of the UCL intensity is obtained. Combining the results with numerical simulations, the phenomenon is ascribed to effects of metal quenching, plasmonic field enhancement, and the cavity modes for the excitation and emission photons. Finally it is verified that, for the cap-like submicrometer metal cavities, allocating the particles at the open mouths of the cavities is more advantageous to obtaining stronger enhancements of the particles' UCL. And the demonstrated structure is also convenient to fabricate for applications, e.g., in solar cells.
机译:基于在金属表面上的等离子体激元的局部场增强,金属纳米结构常用于增强纳米材料的光致发光。在这里,研究了在帽状金属腔中亚微米级的NaGd0.3Yb0.7F4:Er粒子的上转换发光(UCL)增强,该粒子是通过在分散在玻璃基板上的粒子上沉积银膜而形成的。颗粒的UCL不仅受等离激元增强的局部场的影响,而且还受腔模的影响。通过改变腔的尺寸和颗粒在腔中的位置,在实验中观察到了UCL增强和电子减少率的波动变化。通常,获得最大12倍的UCL强度增强。将结果与数值模拟相结合,该现象归因于金属淬灭,等离子体场增强以及激发和发射光子的腔模的影响。最终证实,对于帽状亚微米金属腔,将颗粒分配在腔的开口处更有利于获得颗粒的UCL的增强。并且所展示的结构还便于制造用于例如太阳能电池中的应用。

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