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首页> 外文期刊>Materials science & engineering >Gold coated Cicada wings: Anti-reflective micro-environment for plasmonic enhancement of fluorescence from upconversion nanoparticles
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Gold coated Cicada wings: Anti-reflective micro-environment for plasmonic enhancement of fluorescence from upconversion nanoparticles

机译:镀金蝉翼:抗反射微环境,可等离子增强上转换纳米粒子发出的荧光

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We demonstrate that the upconversion nanoparticles (UCNPs) fluoresce 50 times more on a gold (Au) coated Cicada wing. UCNPs are attractive bioimaging, and therapeutic materials as it is excited in the infrared, limited only by the low fluorescence quantum yield. Here, a plasmonic effect, coupled with an anti-reflecting (AR) Cicada wing substrate coated with Au is demonstrated to enhance the fluorescence of the UCNPs. Silica (SiO2) coated Erbium doped green emitting core-shell UCNPs (NaYF4: Yb3+, Er3+@SiO2) show conventional metal enhanced fluorescence. The AR property of the Cicada wing (R similar to 0.2% @ 1000 nm) contributes 6-fold enhancement as compared to flat (silicon, and quartz) substrates (R similar to 10-30% @ 1000 nm). Upon plasmon coupling, with an optimally sputtered Au coating, an unprecedented enhancement of 50-fold for the 520, and 655 nm emission was obtained on the Au coated Cicada wings, vis-a-vis planar uncoated (silicon, and quartz) substrates. The enhancement was also confirmed by direct fluorescence imaging of the photonic substrates used. The fluorescence lifetime of the core, and the core-shell UCNPs (similar to 300 mu s) decreased by similar to 30-40%, and 10-30%, respectively, when placed on Au coated substrates.
机译:我们证明,在金(Au)涂层的蝉翼上,上转换纳米颗粒(UCNPs)发出的荧光更多50倍。 UCNP是有吸引力的生物成像和治疗材料,因为它在红外光中受到激发,仅受低荧光量子产率的限制。在这里,等离子体激元效应与涂有Au的减反射(AR)蝉翼机翼基板相结合,可以增强UCNP的荧光。二氧化硅(SiO2)涂层的掺do绿色发射核壳UCNPs(NaYF4:Yb3 +,Er3 + @ SiO2)显示出常规的金属增强荧光。与平坦(硅和石英)基板(R相似于1000 nm的10-30%)相比,蝉翼的AR特性(R相似于0.2%@ 1000 nm)贡献了> 6倍的增强。进行等离激元耦合后,具有最佳溅射的Au涂层,在Au涂层的蝉翼,相对于平面未涂层(硅和石英)基板上,520的空前增强> 520倍,并获得655 nm的发射。 。通过对所使用的光子基板进行直接荧光成像也证实了这种增强。当放置在Au涂层的基材上时,核和核-壳UCNP(约300μs)的荧光寿命分别降低了约30-40%和10-30%。

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