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A Blue Light-Excited Broadband Chartreuse-Emitting LuMg2Al3Si2O12:Ce3+ Garnet Phosphor With High Thermal Stability
Fangyu Zhu1, Kai Jia2, Yixi Guo2
1School of Chemistry and Chemical Engineering, Kunming University, Kunming, China.
None:
High-brightness and thermally stable chartreuse-emitting phosphors are highly desirable for high-quality phosphor-converted white light-emitting diodes (pc-LEDs). In this article, a new chartreuse phosphor, Lu(1-x)Mg2Al3Si2O12:xCe3+ (LMASO:xCe3+), was synthesized via a high-temperature solid-state reaction. X-ray diffraction and Rietveld refinement reveal that LMASO phosphors crystallize in the cubic system (Ia d). The optimal doping concentration of Ce3+ in LMASO is 10 mol%, which is higher than that of other Ce3+-doped garnet phosphors. Its broad excitation band peaking at 429 nm matches well with the emission from commercial blue LED chips. Under 429 nm excitation, the LMASO:Ce3+ phosphor exhibits a wide asymmetric emission band ranging from 450 to 650 nm. The high activation energy (0.334 eV) indicates a good thermal quenching resistance. A white LED device was fabricated by combining a 450nm blue LED chip with the LMASO:0.10Ce3+ chartreuse phosphor and a commercial CaAlSiN3:Eu2+ red phosphor. This device emits bright warm-white light with excellent CIE color coordinates (0.3978, 0.3959), a low correlated color temperature (CCT = 3500 K) and a high color rendering index (Ra = 95.7). The results demonstrate that LMASO:Ce3+ phosphor is a promising candidate for pc-LEDs.
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