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Efficiency and Thermal Stability Enhancements of Sr2SiO4:Eu2+ Phosphor via Bi3+ Codoping for Solid-State White Lighting
SCI Impact Factor
1.491
Authors
S. H. Park, H. S. Yoon, H. M. Boo, H. G. Jang, K. H. Lee, and W. B. Im*
Journal
Jpn. J. Appl. Phys.
Status
published
Vol
51
Page
022602-5
Year
2012

Bi and Eu-codoped yellow-emitting phosphors of composition Sr1.95-xEu0.05BixSiO4 were prepared, and their emission and thermal quenching characteristics were investigated. The initial PL intensity and thermal quenching behaviors of Sr1.95-xEu0.05BixSiO4 were affected by the Bi-codoping as a coactivator. When 0.01 mol % of Bi was codoped to Sr1.95-xEu0.05BixSiO4, it showed an intense emission peak at 543 nm under 450 nm excitation. The peak intensity corresponds to a relative intensity of 112% of a commercial Sr2SiO4:Eu2+ phosphor (Force4 Corp.), which may be attributed to energy transfer between Bi3+ and Eu2+. The results suggest that phosphors deriving from Sr1.95-xEu0.05BixSiO4 will be a breakthrough for white light emitting diode (LEDs) and related applications in terms of efficiency enhancement and thermal stability.