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Structural and photoluminescence study of Mn2+‐activated CaYAl3O7 blue phosphors
Authors:Anupam Selot  J Tripathi  S Tripathi  Mahendra Aynyas
Institution:1. Department of Physics, Sadhu Vaswani PG College, Bhopal, (M.P.), India;2. Department of Physics, ISLE, IPS Academy, Indore, India;3. UGC‐DAE Consortium for Scientific Research, Indore, India;4. Department of Physics, C.S.A. Govt P. G. College Sehore, (M.P.), India
Abstract:The structural and photoluminescence properties of CaYAl3O7 phosphor material doped with varying concentration of Mn2+ have been studied. The phosphor material was synthesized by the combustion method at 500 °C and was characterized using X‐ray diffraction, Fourier transform infrared spectroscopy and photoluminescence spectroscopy (PL). X‐ray diffraction showed that the crystallites have average sizes in the range of ~58–70 nm. Corresponding Fourier transform infrared spectroscopy investigations confirm the phase formation and the presence of aluminate group (Al‐O bands) in CaYAl3O7:Mn2+ phosphor. Under the excitation at 356 nm wavelength, the PL spectra show the occurrence of two emission peaks obtained in the blue region at 389 nm and 412 nm, which is attributed to the 4 T1(G) → 6A1 transition of Mn2+ ion. Upon increasing Mn2+ concentration, the relative PL intensity shows an initial decrement followed by an increase displaying the effect of concentration quenching. Overall the results suggest the possibility of using this material in white lighting devices and plasma display panels. Copyright © 2013 John Wiley & Sons, Ltd.
Keywords:combustion method  photoluminescence  thermoluminescence  XRD  FTIR
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