Phosphor Handbook
Phosphor Handbook
Experimental Methods for Phosphor Evaluation and Characterization
Wang, Xiaojun; Liu, Ru-Shi
Taylor & Francis Ltd
01/2024
584
Mole
Inglês
9780367566227
15 a 20 dias
Descrição não disponível.
1. First-Principles Methods as a Powerful Tool for Fundamental and Applied Research in the Field of Optical Materials. 2. Crystal Structure Design and Luminescence Performance of NIR Phosphors. 3. Solid Solution Design toward New Phosphor Discovery and Photoluminescence Tuning. 4. Local Structure and Luminescence Tuning in Phosphors. 5. Design of Narrowband Emission Phosphors. 6. Mn4+-Doped LED Phosphors. 7. Design Principles to Discover Highly Thermally Stable Phosphor. 8. Combinatorial Chemistry Approach and the Taguchi Method for Phosphors. 9. Energy Transfer between Lanthanide to Lanthanide in Phosphors for Bioapplications. 10. Design Growth of Nanophosphors and Their Applications. 11. Near-Infrared Phosphors with Persistent Luminescence over 1000 nm for Optical Imaging. 12. High-Pressure Study of Phosphors Emission. 13. Absolute Photoluminescence Quantum Yield of Phosphors. 14. Photoionization Analysis on Phosphors. 15. Synchrotron Radiation Analysis on Phosphors.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
optical materials research;density functional theory;photoluminescence analysis;solid solution synthesis;energy transfer mechanisms;nanophosphor applications;advanced phosphor characterization techniques
1. First-Principles Methods as a Powerful Tool for Fundamental and Applied Research in the Field of Optical Materials. 2. Crystal Structure Design and Luminescence Performance of NIR Phosphors. 3. Solid Solution Design toward New Phosphor Discovery and Photoluminescence Tuning. 4. Local Structure and Luminescence Tuning in Phosphors. 5. Design of Narrowband Emission Phosphors. 6. Mn4+-Doped LED Phosphors. 7. Design Principles to Discover Highly Thermally Stable Phosphor. 8. Combinatorial Chemistry Approach and the Taguchi Method for Phosphors. 9. Energy Transfer between Lanthanide to Lanthanide in Phosphors for Bioapplications. 10. Design Growth of Nanophosphors and Their Applications. 11. Near-Infrared Phosphors with Persistent Luminescence over 1000 nm for Optical Imaging. 12. High-Pressure Study of Phosphors Emission. 13. Absolute Photoluminescence Quantum Yield of Phosphors. 14. Photoionization Analysis on Phosphors. 15. Synchrotron Radiation Analysis on Phosphors.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.