EXAFS study of cation reordering in NaYF sub(4):Yb super(3+), Tb super(3+) up-conversion luminescence materials

The NaYF sub(4):Yb super(3+),Tb super(3+) (x sub(Yb): 0.20, x- sub(Tb): 0.04) materials were prepared using the co-precipitation method. The as-prepared material was washed either with or without water in addition to ethanol and thereafter annealed for 5 h at 500 [degrees]C. This resulted in materia...

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Veröffentlicht in:Journal of rare earths 2014-03, Vol.32 (3), p.226-229
Hauptverfasser: Brito, H F, Holsa, J, Laamanen, T, Laihinen, T, Lastusaari, M, Pihlgren, L, Rodrigues, L CV, Soukka, T
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Sprache:eng
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Zusammenfassung:The NaYF sub(4):Yb super(3+),Tb super(3+) (x sub(Yb): 0.20, x- sub(Tb): 0.04) materials were prepared using the co-precipitation method. The as-prepared material was washed either with or without water in addition to ethanol and thereafter annealed for 5 h at 500 [degrees]C. This resulted in materials with moderate or very high up-conversion luminescence intensity, respectively. The structural study carried out with X-ray powder diffraction revealed microstrains in the rare earth (R) sublattice that were relaxed for the material with very high up-conversion intensity thus decreasing energy losses. The local structural details were investigated with R L sub(III) and Y K edge extended X-ray absorption fine structure (EXAFS) using synchrotron radiation. Around 10 mol.% of the Yb super(3+) ions were found to occupy the Na site in the material with very high up-conversion intensity. These Yb species formed clusters with the Tb super(3+) ions occupying the regular Na/R sites. Such clustering enhanced the energy transfer between Yb super(3+) and Tb super(3+) ' thus intensifying the up-conversion emission.
ISSN:1002-0721
DOI:10.1016/S1002-0721(14)60068-5