Influence of morphology on luminescence properties of xenotime-type phosphors NaYP2O7:Eu3+ synthesized via solid state and citrate-gel routes

A series of Eu 3+ activated xenotime type rare earth phosphate NaYP 2 O 7 based orange–red emitting phosphors have been prepared via solid state (SS) and citrate gel (CG) methods. The morphological variation of the developed phosphors concerning synthesis method and heat treatment has significantly...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2018-05, Vol.29 (9), p.7458-7467
Hauptverfasser: Sreena, T. S., Rao, P. Prabhakar, Ajmal, K. N., Raj, Athira K. V.
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Sprache:eng
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Zusammenfassung:A series of Eu 3+ activated xenotime type rare earth phosphate NaYP 2 O 7 based orange–red emitting phosphors have been prepared via solid state (SS) and citrate gel (CG) methods. The morphological variation of the developed phosphors concerning synthesis method and heat treatment has significantly influenced the luminescence properties. The phosphors synthesized by the CG route reveals the formation of homogeneous powder with small particles along with uniform size. The developed phosphors exhibit intense orange–red emission under 394 nm near UV excitation with a full width half maximum ~ 2 nm. Compared with the phosphors synthesized by SS route, the phosphors obtained by CG method possess enhanced and sharper orange–red emission with longer lifetimes due to the 5 D 0 – 7 F 1–2 transitions. The developed narrow red emitting phosphors have better emission intensity in comparison with commercially available Y 2 O 3 :Eu 3+ red phosphors. Thus, these phosphors could be a suitable candidate for solid state lighting applications for the fabrication of white light emitting diodes.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-018-8737-5