Abstract
(Figure Presented) We demonstrated that the nanostructures comprising silver cores and dense layers of Y2O3:Er separated by a silica shell are an excellent model system to study the interaction between upconversion materials and metals in nanoscale. This architecture allows for versatile control of the Y2O3:Er-metal interaction through control of the silica dielectric spacer thickness and the metal-core size. Finally, the nanoparticles are potentially interesting as fluorescent labels in, for instance (single particle), imaging experiments or bioassays which require low background or tissue penetrating wavelengths. Copyright © 2010 American Chemical Society.
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CITATION STYLE
Zhang, F., Braun, G. B., Shi, Y., Zhang, Y., Sun, X., Reich, N. O., … Stucky, G. (2010). Fabrication of Ag@SiO2@Y2O3: Er nanostructures for bioimaging: Tuning of the upconversion fluorescence with silver nanoparticles. Journal of the American Chemical Society, 132(9), 2850–2851. https://doi.org/10.1021/ja909108x
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