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Over 1000-fold enhancement of upconversion luminescence using water-dispersible metal-insulator-metal nanostructures

机译:使用水分散性金属-绝缘体-金属纳米结构上转换发光增强1000倍以上

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摘要

Rare-earth activated upconversion nanoparticles (UCNPs) are receiving renewed attention for use in bioimaging due to their exceptional photostability and low cytotoxicity. Often, these nanoparticles are attached to plasmonic nanostructures to enhance their photoluminescence (PL) emission. However, current wet-chemistry techniques suffer from large inhomogeneity and thus low enhancement is achieved. In this paper, we report lithographically fabricated metal-insulator-metal (MIM) nanostructures that show over 1000-fold enhancement of their PL. We demonstrate the potential for bioimaging applications by dispersing the MIMs into water and imaging bladder cancer cells with them. To our knowledge, our results represent one and two orders of magnitude improvement, respectively, over the best lithographically fabricated structures and colloidal systems in the literature. The large enhancement will allow for bioimaging and therapeutics using lower particle densities or lower excitation power densities, thus increasing the sensitivity and efficacy of such procedures while decreasing potential side effects.
机译:稀土激活的上转换纳米粒子(UCNPs)由于其出色的光稳定性和低细胞毒性而受到了生物成像的新关注。通常,这些纳米粒子附着在等离子体纳米结构上,以增强其光致发光(PL)发射。然而,当前的湿化学技术具有很大的不均匀性,因此实现了低的增强。在本文中,我们报告了光刻制造的金属-绝缘体-金属(MIM)纳米结构,其PL增强了1000倍以上。我们通过将MIM分散到水中并用它们成像膀胱癌细胞来证明生物成像应用的潜力。据我们所知,我们的结果分别比文献中最好的光刻加工结构和胶体体系提高了一个数量级和两个数量级。较大的增强将允许使用较低的粒子密度或较低的激发功率密度进行生物成像和治疗,从而在降低潜在副作用的同时提高此类程序的灵敏度和功效。

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