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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Structural and luminescent properties of a NaYF 4-aerogel composite
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Structural and luminescent properties of a NaYF 4-aerogel composite

机译:nayf 4 -Aerogel Composite的结构和发光性能

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摘要

Upconversion materials, capable of energy-shifting light, have direct application in devices where the tunability of the optical spectrum can result in higher performance. Due to the low transparency of upconversion nanomaterials, it is beneficial to disperse them in a medium with a low optical attenuation coefficient in order to allow light to reach and increase the contributions from each individual particle. Silica aerogels, with their high transparency and open porosity, are ideal media for the dispersion of the nanomaterials throughout a volume. NaYF4–based nanocrystals with differing dopants were incorporated into silica xerogels and aerogels to observe the effect of the composites on the properties of each. It was observed that, while the average surface area of the aerogel decreased in the composite, the shape and phase of the nanocrystals were preserved during xerogel processing. The luminescence of the nanoparticles increased upon incorporation into the xerogel composites. By accounting for effects emerging from collection geometry and the composite morphology, it is argued that the increase in the composite luminescent intensity is due to the nanoparticles being shielded from quenching effects by the silica matrix.
机译:能够加强光的上变化材料在光谱可调性可能导致更高的性能方面具有直接应用。由于上转换纳米材料的透明度低,因此有利于将它们分散在具有低光衰减系数的介质中,以便允许光达到并增加每个单独颗粒的贡献。具有高透明度和开放孔隙率的二氧化硅气凝胶是纳米材料在整个体积中分散的理想介质。基于NayF4的纳米晶体与不同的掺杂剂掺入二氧化硅Xerogels和Aerogels中,观察复合材料对各自的性质的影响。观察到,虽然气体的平均表面积在复合材料中减少,但在Xerogel加工过程中保留了纳米晶体的形状和相。在掺入Xerogel复合材料时,纳米颗粒的发光增加。通过算用于收集几何形状的效果和复合形态,认为复合发光强度的增加是由于纳米颗粒被二氧化硅基质屏蔽了猝灭效应。

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