Optical and EPR Spectroscopic Studies of Deep Red Light Emitting Fe-Doped LiAl5O8 Phosphor Prepared Via Propellant Combustion Route
Autor: | Manoj Mohapatra, G. Sivaramaiah, S.J. Dhoble, Neelam Singh, Vijay Singh, J.L. Rao, M.S. Pathak, P. K. Singh |
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Rok vydání: | 2016 |
Předmět: |
010302 applied physics
Photoluminescence Magnetic moment Absorption spectroscopy Chemistry Analytical chemistry Resonance Phosphor 02 engineering and technology 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Magnetic susceptibility Electronic Optical and Magnetic Materials law.invention law 0103 physical sciences Materials Chemistry Curie constant Electrical and Electronic Engineering 0210 nano-technology Electron paramagnetic resonance |
Zdroj: | Journal of Electronic Materials. 46:1525-1531 |
ISSN: | 1543-186X 0361-5235 |
DOI: | 10.1007/s11664-016-5192-z |
Popis: | LiAl5O8 doped with Fe was synthesized by a propellant combustion route at furnace temperature of 773 K. The phosphor was characterized using powder x-ray diffraction, optical absorption, electron paramagnetic resonance (EPR) and photoluminescence spectroscopic techniques. The optical absorption spectrum exhibits a broad band at 242 nm characteristic of charge transfer between Fe3+–O2−. On excitation with 293 nm, emission band for the Fe3+ ion was observed at 687 nm. The CIE (International Commission on Illumination or Commission Internationale de l’Elcairage) coordinates for the system were evaluated adopting standard procedure which suggested that the system can be effective as a deep red emitting phosphor. The EPR spectrum of this phosphor exhibits a number of resonance signals characteristic of Fe3+ ions. The resonance signals at g = 3.16, 2.27 are attributed to Fe3+ present at tetrahedral site with an axial symmetry. The resonance signals at g = 1.98 and 1.43 are attributed to Fe3+ ions in octahedral site with an axial symmetry. Various EPR parameters such as the number of spins, Gibbs free energy, magnetic susceptibility, Curie constant and effective magnetic moment values are calculated and compared at room temperature and 110 K. |
Databáze: | OpenAIRE |
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