Combustion synthesized ZrO2 Gd3+ nanophosphors: structural and photoluminescence studies

Combustion synthesized ZrO2 Gd3+ nanophosphors: structural and photoluminescence studies ZrO2 samples with variable Gd3+ doping have been prepared by combustion synthesis method followed by annealing at 900 °C. The samples have been characterized by X-ray absorption, Scanning electron microscopy, and electron dispersive X-ray spectroscopy. The optical behaviour was also determined by recording excitation and emission spectroscopy of the phosphor. The emission spectrum contains intense peak at UV region along with peaks at visible region. All the peaks were obtained due to transitions between the energy levels of the Gd3+ ion. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Materials Science: Materials in Electronics Springer Journals

Combustion synthesized ZrO2 Gd3+ nanophosphors: structural and photoluminescence studies

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Publisher
Springer US
Copyright
Copyright © 2017 by Springer Science+Business Media New York
Subject
Materials Science; Optical and Electronic Materials; Characterization and Evaluation of Materials
ISSN
0957-4522
eISSN
1573-482X
D.O.I.
10.1007/s10854-017-7077-1
Publisher site
See Article on Publisher Site

Abstract

ZrO2 samples with variable Gd3+ doping have been prepared by combustion synthesis method followed by annealing at 900 °C. The samples have been characterized by X-ray absorption, Scanning electron microscopy, and electron dispersive X-ray spectroscopy. The optical behaviour was also determined by recording excitation and emission spectroscopy of the phosphor. The emission spectrum contains intense peak at UV region along with peaks at visible region. All the peaks were obtained due to transitions between the energy levels of the Gd3+ ion.

Journal

Journal of Materials Science: Materials in ElectronicsSpringer Journals

Published: May 20, 2017

References

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