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Título: | Collective plasmonic resonances enhance the photoluminescence of rare-earth nanocrystal films processed by ultrafast annealing |
Autor: | Cabello-Olmo, Elena; Higashino, Makoto; Murai, Shunsuke; Tanaka, Katsuhisa; Lozano, Gabriel CSIC ORCID; Míguez, Hernán CSIC ORCID | Palabras clave: | Plasmonics Ultrafast thermal processing Rare-earth nanoparticles Transparent thin films Efficient light emission Photonics |
Fecha de publicación: | 23-dic-2022 | Editor: | DIGITAL.CSIC | Citación: | Cabello-Olmo, Elena; Higashino, Makoto; Murai, Shunsuke; Tanaka, Katsuhisa; Lozano, Gabriel; Míguez, Hernán; 2022; Collective plasmonic resonances enhance the photoluminescence of rare-earth nanocrystal films processed by ultrafast annealing [Dataset]; DIGITAL.CSIC; https://doi.org/10.20350/digitalCSIC/15076 | Resumen: | Herein, we demonstrate that rapid thermal annealing allows achieving close-to-one photoluminescence quantum yield while preserving the transparency of rare-earth nanocrystal films, which further enables their integration with nanophotonics. The combination with periodic arrays of aluminum nanodisks that support collective plasmonic resonances leads to enhanced directional emission. | URI: | http://hdl.handle.net/10261/285609 | DOI: | https://doi.org/10.20350/digitalCSIC/15076 | Referencias: | Cabello-Olmo, Elena; Higashino, Makoto; Murai, Shunsuke; Tanaka, Katsuhisa; Lozano, Gabriel; Míguez, Hernán. Collective plasmonic resonances enhance the photoluminescence of rare-earth nanocrystal films processed by ultrafast annealing. Chemical Communications (2022). https://doi.org/10.1039/D2CC04779A . http://hdl.handle.net/10261/285606 |
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