Critical view on energy transfer, site symmetry, improvement in luminescence of Eu3+, Dy3+ doped YVO4 by core-shell formation
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3373409
Reference22 articles.
1. SnO2:Eu3+ nanoparticles dispersed in TiO2 matrix: Improved energy transfer between semiconductor host and Eu3+ ions for the low temperature synthesized samples
2. Preparation and Luminescence Properties of YVO4:Ln and Y(V, P)O4:Ln (Ln = Eu3+, Sm3+, Dy3+) Nanofibers and Microbelts by Sol−Gel/Electrospinning Process
3. Multicolor Tuning of (Ln, P)-Doped YVO4 Nanoparticles by Single-Wavelength Excitation
4. Rapid fabrication of luminescent Eu:YVO4 films by microwave-assisted chemical solution deposition
5. Luminescent properties of PEG-added nanocrystalline YVO4:Eu3+ phosphor prepared by a hydrothermal method
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1. γ-ray shielding effect on the time resolved orange-red phosphorescence of nanoscale gadolinium orthovanadates upon Eu3+ doping;Interactions;2024-07-03
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3. Photo-Luminescent Materials: Down-Conversion, Quantum Cutting, Up-Conversion, Photo-Avalanche, Core@Shell Nanostructures;Handbook of Materials Science, Volume 1;2023-11-22
4. Optical transitions and radiative properties of green emitting Ho3+:YVO4 phosphor;RSC Advances;2023
5. Effect of signal to noise ratio on luminescence property of YPO4:Eu;Materials Letters: X;2022-12
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