Design of anti-thermal quenching Pr3+-doped niobate phosphors based on a charge transfer and intervalence charge transfer band excitation-driven strategy
Author:
Affiliation:
1. Department of Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, P. R. China
Abstract
Funder
Chinese Academy of Sciences
National Natural Science Foundation of China
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2023/QI/D3QI01009K
Reference57 articles.
1. A Novel Optical Thermometry Strategy Based on Diverse Thermal Response from Two Intervalence Charge Transfer States
2. Single Bi 3+ Ultrabroadband White Luminescence in Double Perovskite via Crystal Lattice Engineering toward Light‐Emitting Diode Applications
3. Synthesis of broadband NIR garnet phosphor Ca4ZrGe3O12: Cr3+, Yb3+ for NIR pc-LED applications
4. Single‐Crystal Red Phosphors and Their Core–Shell Structure for Improved Water‐Resistance for Laser Diodes Applications
5. Multifunctional optical thermometry based on the stark sublevels of Er 3+ in CaO‐Y 2 O 3 : Yb 3+ /Er 3 +
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1. Recent progress on modulating luminescence thermal quenching properties of Bi3+-activated phosphors;Inorganic Chemistry Frontiers;2024
2. Multi-Band Emission of Pr3+-Doped Ca3Al2O6 and the Effects of Charge Compensator Ions on Luminescence Properties;Nanomaterials;2023-12-19
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