期刊
CRYSTENGCOMM
卷 16, 期 27, 页码 6170-6174出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ce00535j
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资金
- Konkuk University
Highly crystalline Y2O3:Eu3+ yolk-shell phosphor powders with enhanced photoluminescence intensity are successfully prepared by spray pyrolysis. The Y2O3:Eu3+ yolk-shell powder is formed directly from each droplet containing yttrium and europium salts and sucrose inside a hot-wall reactor that is maintained at 900 degrees C. The yolk-shell structure of the phosphor powder is maintained even at a high post-treatment temperature of 1200 degrees C, exhibiting the maximum photoluminescence intensity. For comparison, a spherical shape Y2O3:Eu3+ phosphor powder is also prepared by the same procedure but without sucrose during spray pyrolysis. The photoluminescence intensity of the Y2O3:Eu3+ yolk-shell powder is 171% of that of the spherical shape phosphor powder at a post-treatment temperature of 1200 degrees C. The morphological advantage of a yolk-shell phosphor powder with a core@void@shell configuration inducing higher absorption of excitation light in the structure is attributed to multiple light-reflecting and light-scattering in the interstitial void between the core and the shell.
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