Site selectively excited luminescence and energy transfer of X1-Y2SiO5:Eu at nanometric scale
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.371246
Reference11 articles.
1. High-speed holographic recording of 500 images in a rare earth doped solid
2. Luminescence of the System (Y, Gd, Tb)2, SiO5 :Eu3+
3. Fast excited-state relaxation of Eu-Eu pairs in commercial Y2O3: Eu3+ phosphors
4. Site-selective excitation of europium-doped lanthanum oxycarbonates
5. Luminescence and energy migration in a one-dimensional system: EuMgB5O10
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1. Surface plasmon assisted preparation of X1-type Y2SiO5:Eu3+-Au luminescent crystals;Nanoscale;2023
2. Spherical red-emitting X1-Y2SiO5:Eu and α-Y2Si2O7:Eu phosphors with high color purity: The evolution of morphology, phase and photoluminescence upon annealing;Ceramics International;2021-12
3. Influence of the ratio of rare earth oxyorthosilicate R2SiO5 (R = La, Y) hosts on the structure and optical properties of co-doped Pr3+ /Dy3+ phosphors;Ceramics International;2020-11
4. Comment on and complement to "Effect of calcination temperature on the degree of polymorphic transformation in Y2SiO5 nanopowders synthesized by sol gel method" by ZS Khan et al. [Journal of Non-Crystalline Solids 432 (2016) 540-544];J NON-CRYST SOLIDS;2019
5. Comment on and complement to “Effect of calcination temperature on the degree of polymorphic transformation in Y2SiO5 nanopowders synthesized by sol–gel method” by Z.S. Khan et al. [Journal of Non-Crystalline Solids 432 (2016) 540–544];Journal of Non-Crystalline Solids;2019-12
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