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Toward white light emission from plasmonic- luminescent hybrid nanostructures
- Publication Year :
- 2021
-
Abstract
- We study the light emission of plasmonic- luminescent hybrid nanostructures consisting of Ag nanoparticles (NPs) embedded in europium oxide (EuOx). The Ag NPs present a bidimensional organization in the nanostructures and they optically behave as oblate spheroids. The photoluminescence (PL) spectral response of the nanostructures evolves from a narrow red emission characteristic of Eu3+ ions in absence of Ag NPs to a broad blue-green emission band associated with Eu2+ ions when the layer of Ag NPs is present. This behavior is not related to a change in the Eu2+/Eu3+ ratio, which is verified by compositional analysis. Instead, a detailed investigation of the PL emission of the nanostructures suggests that the coupling of the Ag NPs to the Eu2+ ions present in the EuOx layer, which manifests itself in an ef!cient sensitization of these ions, enhances their broad visible emission. In particular, the longitudinal mode of the Ag NPs surface plasmon is considered to be responsible for the ef!cient energy transfer for the non-normal incidence excitation PL con!guration used. Finally, the use of a capping amor- phous Al2O3 layer allows improving the robustness of hybrid nanostructures and further enhances their PL emission. These !ndings provide a new path to actively control the selective excitation of Eu2+ and Eu3+ ions via a controlled coupling with the surface plasmon resonance modes of the Ag NPs and points to these nanostructures as promising building blocks for the development of inte- grable white light sources.
Details
- Database :
- OAIster
- Publication Type :
- Electronic Resource
- Accession number :
- edsoai.on1306016368
- Document Type :
- Electronic Resource