Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor

Gd3+ activated CaMgP2O7 were successfully synthesized by different synthesis route namely; the solid-state reaction method, the sol-gel method, wet chemical, and solution combustion method. The prepared samples were characterized by several characterization techniques like XRD, SEM, FT-IR, EPR, and...

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Main Authors: R.G. Kunghatkar, Vijay L. Barai, S.J. Dhoble
Format: Article
Language:English
Published: Elsevier 2019-06-01
Series:Results in Physics
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379719304425
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author R.G. Kunghatkar
Vijay L. Barai
S.J. Dhoble
author_facet R.G. Kunghatkar
Vijay L. Barai
S.J. Dhoble
author_sort R.G. Kunghatkar
collection DOAJ
description Gd3+ activated CaMgP2O7 were successfully synthesized by different synthesis route namely; the solid-state reaction method, the sol-gel method, wet chemical, and solution combustion method. The prepared samples were characterized by several characterization techniques like XRD, SEM, FT-IR, EPR, and PL. CaMgP2O7 has a monoclinic crystal structure. The effective g value geff ≈ 5.88, 2.88, and 1.91 were observed in CaMgP2O7: Gd3+. PL excitation at 274 nm and emission at 314 nm indicates good incorporation of dopant Gd3+ ion in calcium magnesium pyrophosphate host. All characterization techniques show that the solid state and sol-gel techniques are more suitable for the synthesis of phosphate group as compared to wet chemical and solution combustion method. Keywords: Sol-gel, XRD, Phosphor, SEM, FT-IR, PL, Phosphate
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spelling doaj.art-1edeae62d7c342f7b68cb474ae092c9d2022-12-22T00:12:23ZengElsevierResults in Physics2211-37972019-06-0113Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphorR.G. Kunghatkar0Vijay L. Barai1S.J. Dhoble2Department of Physics, R. T. M. Nagpur University, Nagpur 440033, IndiaDepartment of Physics, R. T. M. Nagpur University, Nagpur 440033, IndiaCorresponding author.; Department of Physics, R. T. M. Nagpur University, Nagpur 440033, IndiaGd3+ activated CaMgP2O7 were successfully synthesized by different synthesis route namely; the solid-state reaction method, the sol-gel method, wet chemical, and solution combustion method. The prepared samples were characterized by several characterization techniques like XRD, SEM, FT-IR, EPR, and PL. CaMgP2O7 has a monoclinic crystal structure. The effective g value geff ≈ 5.88, 2.88, and 1.91 were observed in CaMgP2O7: Gd3+. PL excitation at 274 nm and emission at 314 nm indicates good incorporation of dopant Gd3+ ion in calcium magnesium pyrophosphate host. All characterization techniques show that the solid state and sol-gel techniques are more suitable for the synthesis of phosphate group as compared to wet chemical and solution combustion method. Keywords: Sol-gel, XRD, Phosphor, SEM, FT-IR, PL, Phosphatehttp://www.sciencedirect.com/science/article/pii/S2211379719304425
spellingShingle R.G. Kunghatkar
Vijay L. Barai
S.J. Dhoble
Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
Results in Physics
title Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
title_full Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
title_fullStr Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
title_full_unstemmed Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
title_short Synthesis route dependent characterizations of CaMgP2O7: Gd3+ phosphor
title_sort synthesis route dependent characterizations of camgp2o7 gd3 phosphor
url http://www.sciencedirect.com/science/article/pii/S2211379719304425
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