Luminescence characteristics and optimization of (La,Gd)Sr2(Al,B)O5:Ce phosphor for white light emitting diodes
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Luminescence properties of (La,Gd)Sr2(Al,B)O5:Ce phosphors were investigated by changing the content of Gd and B substituent. The Gd or B substitution was confirmed to improve the emission intensity. The emission peak of LaSr2AlO5:Ce was shifted to the longer wavelength due to the enlargement of crystal-field splitting for Ce3+ activators as the result of the unit-cell volume reduction when the Gd and B atoms are substituted. In the B-substituted samples, in addition to the cell volume reduction, the change in the lattice covalency due to the large electronegativity difference between B3+ and Al3+ has additionally contributed to shift the emission peak. The crystallite sizes of phosphors were enlarged using small amount of Gd and B atoms. Also, the absorption for the 4f?d absorption of Ce3+ ions in UV/visible spectrum was greatly enhanced by the substitution of both Gd and B. Therefore, it was concluded that the enhancement of the emission intensity via the substitution is due to the increase in the crystallinity and the light-absorption ability. Finally, the optimized sample La0.89Ce0.01Gd0.1Sr2Al0.9B0.1O5 had about 368 % improved emission intensity compared with La0.99Ce0.01Sr2AlO5.

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