Article ID Journal Published Year Pages File Type
1489772 Materials Research Bulletin 2012 4 Pages PDF
Abstract

Green light-emitting Lu2.985Al5O12:Ce0.015 (LuAG:Ce) phosphor powders are prepared by spray pyrolysis. The only crystallized phase in the precursor powders and post-treated powders at temperatures below 800 °C is Lu2O3 and the other components are amorphous. Phase pure cubic garnet LuAG:Ce phosphor powders are obtained by post-treatment at 1000 °C. Phosphor powders post-treated at temperatures below 1400 °C retain the spherical shape of the precursor powders. The mean crystallite sizes of phosphor powders post-treated at 1200, 1400, and 1500 °C are 30, 46, and 54 nm, respectively. The excitation spectra contain two bands: a weak band with the maximum peak at 345 nm and a strong broad band in the spectral range from 400 to 490 nm with the maximum peak at 455 nm. The LuAG:Ce phosphor powders have broad emission spectra between 480 and 600 nm, with the maximum peak intensity located at 507 nm. The photoluminescence intensity of the phosphor powders post-treated at 1400 °C is 84.2% of that of the powders post-treated at 1500 °C.

Graphical abstractGreen light-emitting Lu2.985Al5O12:Ce0.015 (LuAG:Ce) phosphor powders are prepared by spray pyrolysis. Phase pure cubic garnet LuAG:Ce phosphor powders are obtained by post-treatment at 1000 °C. The LuAG:Ce phosphor powders have broad emission spectra between 480 and 600 nm.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► Green light-emitting Lu2.985Al5O12:Ce0.015 phosphor powders are prepared by spray pyrolysis. ► Phase pure cubic garnet LuAG:Ce phosphor powders are obtained by post-treatment at 1000 °C. ► The LuAG:Ce phosphor powders have broad emission spectra between 480 and 600 nm.

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Physical Sciences and Engineering Materials Science Ceramics and Composites
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