Structural influence on the photoluminescence properties of Eu super(3+) doped Gd sub(3)MO sub(7) (M = Nb, Sb, and Ta) red phosphors

New red phosphor materials of general formula Gd sub(3-x)MO sub(7):xEu super(3+) (M = Nb, Sb, and Ta) were prepared using a high temperature solid state reaction route. Detailed structural studies using XRD, FT-IR and Raman spectroscopic techniques showed that niobate and tantalate samples crystalli...

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Published inPhysical chemistry chemical physics : PCCP Vol. 16; no. 32; pp. 17108 - 17115
Main Authors Francis T, Linda, Prabhakar Rao, P, Thomas, Mariyam, S. K., Mahesh, V. R., Reshmi, T. S., Sreena
Format Journal Article
LanguageEnglish
Published 01.07.2014
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Abstract New red phosphor materials of general formula Gd sub(3-x)MO sub(7):xEu super(3+) (M = Nb, Sb, and Ta) were prepared using a high temperature solid state reaction route. Detailed structural studies using XRD, FT-IR and Raman spectroscopic techniques showed that niobate and tantalate samples crystallized in the weberite type structure whereas the antimonate sample in the fluorite structure. Photoluminescence properties of the three compositions are correlated with their crystal structures. It was observed that more ordering occurs in the lattice when an M site is doped from Sb to Nb to Ta. Although niobate and tantalate samples possess similar structures more distortions were noticed in the tantalate sample increasing the radiative transition probabilities. Due to the more ordered structure of the Gd sub(3)TaO sub(7) host lattice resulting in a more uniform distribution of Eu super(3+) ions, the tantalate system showed better luminescence properties. The variation in the luminescence intensity with various Eu super(3+) concentrations in the Gd sub(3)TaO sub(7) host lattice was also studied to calculate the optimum doping concentration.
AbstractList New red phosphor materials of general formula Gd sub(3-x)MO sub(7):xEu super(3+) (M = Nb, Sb, and Ta) were prepared using a high temperature solid state reaction route. Detailed structural studies using XRD, FT-IR and Raman spectroscopic techniques showed that niobate and tantalate samples crystallized in the weberite type structure whereas the antimonate sample in the fluorite structure. Photoluminescence properties of the three compositions are correlated with their crystal structures. It was observed that more ordering occurs in the lattice when an M site is doped from Sb to Nb to Ta. Although niobate and tantalate samples possess similar structures more distortions were noticed in the tantalate sample increasing the radiative transition probabilities. Due to the more ordered structure of the Gd sub(3)TaO sub(7) host lattice resulting in a more uniform distribution of Eu super(3+) ions, the tantalate system showed better luminescence properties. The variation in the luminescence intensity with various Eu super(3+) concentrations in the Gd sub(3)TaO sub(7) host lattice was also studied to calculate the optimum doping concentration.
Author S. K., Mahesh
Francis T, Linda
Prabhakar Rao, P
T. S., Sreena
Thomas, Mariyam
V. R., Reshmi
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  fullname: T. S., Sreena
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Snippet New red phosphor materials of general formula Gd sub(3-x)MO sub(7):xEu super(3+) (M = Nb, Sb, and Ta) were prepared using a high temperature solid state...
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StartPage 17108
SubjectTerms Antimony
Lattices
Luminescence
Niobates
Niobium
Phosphors
Tantalates
Tantalum
Title Structural influence on the photoluminescence properties of Eu super(3+) doped Gd sub(3)MO sub(7) (M = Nb, Sb, and Ta) red phosphors
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