Spectroscope properties of KCaY(PO4)2:Eu3+ in vacuum ultraviolet region
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference11 articles.
1. Crystal chemistry of ABC(PO4)2 phases (A=K, Rb, Cs; B=Ca, Sr; C=Ln and Bi) with the hexagonal LaPO4 structure
2. Energy transfer mechanisms in the KCaLa1−x−yCexTby(PO4)2 phases
3. Vacuum ultraviolet optical properties of (La,Gd)PO4:RE3+ (RE=Eu, Tb)
4. Investigations of Phase Structure Transformation and VUV Excitation of YPO4:Tb Synthesized by Solution Precipitation Route
5. Photoluminescence of Ce3+, Pr3+ and Tb3+ activated Sr3Ln(PO4)3 under VUV-UV excitation
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1. Site occupancy and tunable luminescence of Eu2+ and Eu3+ coactivated KCaY (PO4)2:Eu phosphors;Luminescence;2024-06
2. Controllable Site Occupancy of Eu2+ and Tunable Luminescence of Kcay(Po4)2:Eu Phosphor;2023
3. Structural and Luminescence Behavior of Nanocrystalline Orthophosphate KMeY(PO4)2: Eu3+ (Me = Ca, Sr) Synthesized by Hydrothermal Method;Materials;2022-03-01
4. Double perovskite Ca2MgTeO6:Eu3+ red-emitting phosphors with high thermal stability for near UV/blue excited white LEDs;Journal of Luminescence;2020-09
5. Influence of morphology on luminescence properties of xenotime-type phosphors NaYP2O7:Eu3+ synthesized via solid state and citrate-gel routes;Journal of Materials Science: Materials in Electronics;2018-02-12
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