Highly thermal-stable broadband near-infrared emission of Cr3+ doped spinel CdGa2O4 phosphors
Author:
Funder
Chongqing Municipal Basic and Frontier Research Project
National Aerospace Science Foundation of China
Guangdong University of Technology
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference53 articles.
1. X-ray-activated persistent luminescence nanomaterials for NIR-II imaging;Pei;Nat. Nanotechnol.,2021
2. Designing and controlling the Ni2+-activated (Zn, Mg)Al2O4 spinel solid-solution for phosphor-converted broadband near-infrared illumination;Chen;J. Mater. Chem. C,2023
3. Thermally stable fluoride phosphor Na3Sc2Li3F12:Cr3+ with broadband emission for NIR pc-LED applications;Yue;Opt. Mater.,2024
4. Boosting broadband short-wave infrared emission to achieve near-unity quantum efficiency via bridging Cr3+–Ni2+ in spinel solid-solutions towards light-emitting diode applications;Chen;Dalton Trans.,2024
5. Unlocking Cr3+–Cr3+ coupling in spinel: ultrabroadband near-infrared emission beyond 900 nm with high efficiency and thermal stability;Chen;ACS Appl. Mater. Interfaces,2024
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