Effect of a Phosphorus Additive on Luminescent and Scintillation Properties of Ceramics GYAGG:Ce

The production of the scintillation ceramics can require the utilization of the phosphorus compounds at certain stages of 3D-printing, such as vat polymerization, applied for the formation of green bodies before sintering. The effect of phosphorus additive on the microstructure, optical, and scintil...

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Veröffentlicht in:Ceramics 2023-09, Vol.6 (3), p.1478-1489
Hauptverfasser: Ermakova, Lydia V., Smyslova, Valentina G., Dubov, Valery V., Kuznetsova, Daria E., Malozovskaya, Maria S., Saifutyarov, Rasim R., Karpyuk, Petr V., Sokolov, Petr S., Komendo, Ilia Yu, Bondarau, Aliaksei G., Mechinsky, Vitaly A., Korzhik, Mikhail V.
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Sprache:eng
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Zusammenfassung:The production of the scintillation ceramics can require the utilization of the phosphorus compounds at certain stages of 3D-printing, such as vat polymerization, applied for the formation of green bodies before sintering. The effect of phosphorus additive on the microstructure, optical, and scintillation parameters of Gd1.494Y1.494 Ce0.012Al2Ga3O12 (GYAGG:Ce) ceramics obtained by pressureless sintering at 1650 °C in an oxygen atmosphere was investigated for the first time. Phosphorus was introduced in the form of NH4H2PO4 into the initial hydroxocarbonate precipitate in a wide concentration range (from 0 to 0.6 wt.%). With increasing of phosphorus concentration, the density and the optical transmittance of garnet ceramics show a decrease, which is caused by an increase in the number of pores and inclusions. The light yield of fast scintillation, which is caused by Ce3+ ions, was found to be affected by the phosphorus additive as well. Moreover, an increase in phosphorescence intensity was recognized.
ISSN:2571-6131
2571-6131
DOI:10.3390/ceramics6030091