Spectroscopy of Lanthanide Doped Oxide Materials provides a comprehensive overview on the most essential characterization techniques of these materials, along with their key applications. The book describes the application of optical spectroscopy of lanthanides doped inorganic phosphor hosts and gives information about their structure and morphology, binding energies, energy of transition and band gap. Also discussed are the properties and applications of rare earth doped inorganic materials and the barriers and potential solutions to enable the commercial realization of phosphors in important…mehr
Spectroscopy of Lanthanide Doped Oxide Materials provides a comprehensive overview on the most essential characterization techniques of these materials, along with their key applications. The book describes the application of optical spectroscopy of lanthanides doped inorganic phosphor hosts and gives information about their structure and morphology, binding energies, energy of transition and band gap. Also discussed are the properties and applications of rare earth doped inorganic materials and the barriers and potential solutions to enable the commercial realization of phosphors in important applications.
The book reviews key information for those entering the field of phosphor research, along with the fundamental knowledge of the properties of transition series elements under UV/Visible/NIR light exposer. Low-cost materials methods to synthesize the materials and spectroscopic characterization methods are also detailed.
Produktdetails
Produktdetails
Woodhead Publishing Series in Electronic and Optical Materials
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Autorenporträt
Sanjay J. Dhoble is a Professor in the Department of Physics at Rashtrasant Tukadoji Maharaj Nagpur University, India. During his research career he has worked on the synthesis and characterization of solid-state lighting materials and phosphors for solar cell efficiency enhancement, as well as the development of radiation dosimetry phosphors, and the biosynthesis of nanoparticles and their applications.
Vijay B. Pawade is an Assistant Professor in the Department of Applied Physics at the Laxminarayan Innovation Technological University, Nagpur, India. His research focuses on rare earth-doped oxide materials and their applications in LEDs, solar cell devices, and photocatalytic processes.
Inhaltsangabe
1. Introduction to electronic spectroscopy of lanthanide, properties, and their applications 2. Development in the innovation of lead halide-based perovskite quantum dots from rare earth-doped garnet-based phosphors for light-emitting diodes 3. Luminescent dynamics of rare earth-doped CaTiO3 phosphors 4. Ln2+, 3+-doped aluminosilicate-based phopshors 5. Lanthanide-doped orthometallate phosphors 6. Lanthanide-doped orthovanadate phosphors: Syntheses, structures, and photoluminescence properties 7. Study of RE ion-doped oxide glass materials for photonic applications 8. Advanced research on oxynitride phosphors 9. Highly luminescent ZnO based upconversion thin films grown by sol-gel spin coating 10. Luminescence properties of rare-earth doped oxide materials 11. Role of lanthanide substitution on suitable sites in enhancing the properties of various electroceramics 12. Rare-earth doping in afterglow oxide phosphors: Materials, persistence mechanisms, and dark vision display applications
1. Introduction to electronic spectroscopy of lanthanide, properties, and their applications 2. Development in the innovation of lead halide-based perovskite quantum dots from rare earth-doped garnet-based phosphors for light-emitting diodes 3. Luminescent dynamics of rare earth-doped CaTiO3 phosphors 4. Ln2+, 3+-doped aluminosilicate-based phopshors 5. Lanthanide-doped orthometallate phosphors 6. Lanthanide-doped orthovanadate phosphors: Syntheses, structures, and photoluminescence properties 7. Study of RE ion-doped oxide glass materials for photonic applications 8. Advanced research on oxynitride phosphors 9. Highly luminescent ZnO based upconversion thin films grown by sol-gel spin coating 10. Luminescence properties of rare-earth doped oxide materials 11. Role of lanthanide substitution on suitable sites in enhancing the properties of various electroceramics 12. Rare-earth doping in afterglow oxide phosphors: Materials, persistence mechanisms, and dark vision display applications
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