Making sense of Lanthanide Luminescence
Осмысление люминесценции лантаноидов
2005-05-01
SCID: 54.1/2gw9ydps
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lanthanide luminescencelanthanide-doped phosphorsluminescent lanthanide complexesnear-infrared luminescencetrivalent lanthanide ions
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Abstract (AI)
The luminescence of trivalent lanthanide ions has found applications in lighting, lasers, optical telecommunications, medical diagnostics, and various other fields. This introductory review presents the basics of organic and inorganic luminescent materials containing lanthanide ions, their applications, and some recent developments. After a brief history of the discovery, purification and early spectroscopic studies of the lanthanides, the radiative and nonradiative transitions of the 4f electrons in lanthanide ions are discussed. Lanthanide-doped phosphors, glasses and crystals as well as luminescent lanthanide complexes with organic ligands receive attention with respect to their preparation and their applications. Finally, two recent developments in the field of luminescent materials are addressed: near-infrared luminescent lanthanide complexes and lanthanide-doped nano-particles.
Key Findings
1
Lanthanide luminescence is governed by radiative and nonradiative transitions involving 4f electrons.
2
Lanthanide-doped phosphors, glasses, and crystals can be prepared as luminescent inorganic materials for diverse applications.
3
Organic ligands enable luminescent lanthanide complexes, expanding the range of organic materials and applications based on lanthanide ions.
4
Recent developments highlighted include near-infrared-emitting lanthanide complexes and lanthanide-doped nanoparticles.
5
Trivalent lanthanide luminescence underpins applications in lighting, lasers, optical telecommunications, medical diagnostics, and other technologies.
Research Object
Luminescent materials containing trivalent lanthanide ions (lanthanide-doped phosphors, glasses, crystals, complexes, and nanoparticles)
Research Subject
The radiative and nonradiative luminescence behavior, preparation, applications, and recent developments of trivalent lanthanide-containing materials
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2005-05-01
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