首页> 外文会议>Rare-earth doping for advanced materials for photonic applications-2011 >Imaging Upconversion from NaYF_4:Er:Yb Nanoparticles on Au and Ag Nanostructured Substrates
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Imaging Upconversion from NaYF_4:Er:Yb Nanoparticles on Au and Ag Nanostructured Substrates

机译:在Au和Ag纳米结构化基底上从NaYF_4:Er:Yb纳米粒子成像上转换

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Near-infrared-to-visible upconversion materials have many promising applications, including use in luminescent solar concentrators, in next-generation displays, and as biological labels. NaYF_4 nano-particles doped with Yb and Er exhibit efficient upconversion and are easily deployed in these applications. It is known that a rough metal surface may increase the yield of fluorescence of a nearby fluorophore, by local field enhancement due to plasmonic resonances, and by modification of the radiative rate(s) of the fluorophore. Thus, properly chosen metallic nanostructures can potentially increase the upconversion efficiency of lanthanide-doped nanoparticles, yet the optimal design of these nanostructures is still an active area of research. In our experiments, we use a spectroscopic imaging system to study the upconversion efficiency of NaYF_4: Er~(3+)/ Yb~(3+) through spatially-resolved upconversion spectra, using a custom-built scanning confocal microscope system with infra-red excitation, and wide-field fluorescence imaging. We present spectrally-resolved upconversion images of NaYF_4:Yb~(3+)/Er~(3+)nanoparticles on plasmonic substrates, including silver nanowires and patterned substrates of gold and silver. Which show localized regions (~ 1 μm) of relatively stronger intensity and modified upconversion spectra, and compare these to wide-field fluorescence images of samples with and without plasmonic substrates.
机译:近红外到可见光的上转换材料具有许多有希望的应用,包括在发光太阳能聚光器,下一代显示器中以及作为生物标签。掺有Yb和Er的NaYF_4纳米粒子表现出有效的上转换,因此很容易在这些应用中部署。众所周知,粗糙的金属表面可通过等离子共振引起的局部场增强和通过改变荧光团的辐射速率来增加附近荧光团的荧光产量。因此,适当选择的金属纳米结构可以潜在地提高掺杂镧系元素的纳米颗粒的上转换效率,但是这些纳米结构的最佳设计仍然是研究的活跃领域。在我们的实验中,我们使用分光镜成像系统,通过定制的扫描共聚焦显微镜系统和红外光谱仪,通过空间分辨的上转换光谱研究NaYF_4:Er〜(3 +)/ Yb〜(3+)的上转换效率。红色激发和宽视场荧光成像。我们提出了等离激元衬底上的NaYF_4:Yb〜(3 +)/ Er〜(3+)纳米粒子的光谱分辨上转换图像,包括银纳米线和金和银的图案化衬底。该图显示了强度相对较强的局部区域(〜1μm)和经过修改的上转换光谱,并将其与带有和不带有等离子体衬底的样品的宽场荧光图像进行了比较。

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