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Sunlike White Light-Emitting Diodes Based on Rare-Earth-Free Luminescent Materials
by
Menéndez-Velázquez, Amador
, García-Delgado, Ana Belén
, Morales, Dolores
in
Color
/ Converters
/ Coumarin
/ Demand
/ Dyes
/ Emissions
/ Energy
/ Illumination
/ Light emitting diodes
/ Lighting
/ Multilayers
/ Organic materials
/ Phosphors
/ Rare earth elements
/ Rendering
/ Semiconductors
/ Solid state
/ Thin films
/ White light
2022
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Sunlike White Light-Emitting Diodes Based on Rare-Earth-Free Luminescent Materials
by
Menéndez-Velázquez, Amador
, García-Delgado, Ana Belén
, Morales, Dolores
in
Color
/ Converters
/ Coumarin
/ Demand
/ Dyes
/ Emissions
/ Energy
/ Illumination
/ Light emitting diodes
/ Lighting
/ Multilayers
/ Organic materials
/ Phosphors
/ Rare earth elements
/ Rendering
/ Semiconductors
/ Solid state
/ Thin films
/ White light
2022
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Do you wish to request the book?
Sunlike White Light-Emitting Diodes Based on Rare-Earth-Free Luminescent Materials
by
Menéndez-Velázquez, Amador
, García-Delgado, Ana Belén
, Morales, Dolores
in
Color
/ Converters
/ Coumarin
/ Demand
/ Dyes
/ Emissions
/ Energy
/ Illumination
/ Light emitting diodes
/ Lighting
/ Multilayers
/ Organic materials
/ Phosphors
/ Rare earth elements
/ Rendering
/ Semiconductors
/ Solid state
/ Thin films
/ White light
2022
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Sunlike White Light-Emitting Diodes Based on Rare-Earth-Free Luminescent Materials
Journal Article
Sunlike White Light-Emitting Diodes Based on Rare-Earth-Free Luminescent Materials
2022
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Overview
Solid-state lighting (SSL) sources based on light-emitting diodes represent the new generation of highly efficient illumination systems that significantly impact energy-saving. The development of white light-emitting diodes (WLEDs) with a combination of high color rendering index (CRI) and high deep-red color rendering R9 is an important challenge in the field of solid-state lighting. On the other hand, most WLEDs use rare-earth inorganic luminescent materials. The annual demand for rare-earth metals has doubled to 125,000 tons in 15 years, and the demand is projected to reach 315,000 tons in 2030. The explosion in demand for these materials, combined with a monopolistic supply source, represents a real risk for the development of WLEDs in the next few years. Luminescent organic materials are a relevant and promising alternative. Here, we report a WLED with a very high CRI of 95.7 and R9 of 78.7, obtained using a combination of a blue LED chip (excitation source) and two organic luminescent dyes (Coumarin 6 and Lumogen Red) acting as spectral converters in a multilayer remote phosphor configuration. To the best of our knowledge, this is the first rare-earth-free WLED with such high values of CRI and R9.
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