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Phosphors, Up Conversion Nano Particles, Quantum Dots and Their Applications Volume 2
Título:
Phosphors, Up Conversion Nano Particles, Quantum Dots and Their Applications Volume 2
ISBN:
9789811015908
Edición:
1st ed. 2016.
PRODUCTION_INFO:
Singapore : Springer Nature Singapore : Imprint: Springer, 2016.
Descripción física:
VIII, 523 p. 303 illus., 263 illus. in color. online resource.
Contenido:
Exploration of New Phosphors Using a Mineral-Inspired Approach in Combination with Solution Parallel Synthesis -- Phosphors for field emission display: recent advances in synthesis, improvement and luminescence properties -- Phosphors with a 660 nm-featured emission for LED/LD lighting in horticulture -- The Application of Phosphor in Agriculture Field -- Rare Earth Solar Spectral Convertor for Si Solar Cells -- Persistent Luminescent Materials -- Foundations of Upconversion Nanoparticles -- Lanthanide-Doped Upconversion Nanoprobes -- Lanthanide-doped core-shell upconversion nanophosphors -- Upconversion luminescence behavior of single nanoparticles -- Persistent Luminescence Nanomaterials for Biomedical Applications: A Quick Grasp of the Trend -- Upconversion Nanoparticles for Bioimaging -- Upconversion Nanoparticle as a Platform for Photoactivation -- Foundations of White Light Quantum Dots -- Cadmium Free Quantum Dots: Principal attractions, properties, and applications -- Synthesis of InP Quantum Dots and Their Application -- Carbon Nitride Quantum Dots and their Applications -- Luminescent Materials for 3D Display Technology.
Síntesis:
This book introduces readers to fundamental information on phosphor and quantum dots. It comprehensively reviews the latest research advances in and applications of fluoride phosphors, oxide phosphors, nitridosilicate phosphors and various quantum dot materials. Phosphors and phosphor-based quantum dot materials have recently gained considerable scientific interest due to their wide range of applications in lighting, displays, medical and telecommunication technologies. This work will be of great interest to researchers and graduate students in materials sciences and chemistry who wish to learn more about the principles, synthesis and analysis of phosphors and quantum dot materials. .
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