Single-phase white-emitting phosphors Ba3Ce(1−x−y)(PO4)3:xTb3+,yMn2+ and Ba3Ce(1−x−z)(PO4)3:xTb3+,zSm3+: structure, luminescence, energy transfer and thermal stability
Abstract
A series of Ba3Ce(1−x−y)(PO4)3:xTb3+,yMn2+ and Ba3Ce(1−x−z)(PO4)3:xTb3+,zSm3+ phosphors were synthesized by a high temperature solid-state reaction. X-ray diffraction, luminescence and decay curves were used to characterize the phosphors. All the synthesized phosphors crystallized in the cubic unit cell with I![[4 with combining macron]](https://www.rsc.org/images/entities/char_0034_0304.gif) 3d space group. Energy can be transferred from Ce3+ to Tb3+/Mn2+/Sm3+ in Ba3Ce(1−x)(PO4)3:xTb3+, Ba3Ce(1−y)(PO4)3:yMn2+, and Ba3Ce(1−z)(PO4)3:zSm3+ phosphors. Furthermore, the color of these phosphors can turn from cyan to green, blue to red, and cyan to pale pink. When Ba3Ce(PO4)3 was co-doped with Tb3+ and Mn2+/Sm3+, Tb3+ could also transfer part of its energy to Mn2+/Sm3+, and more importantly, a white emission can be achieved based on this energy transfer. The phosphors exhibited a good thermal stability, with correlated color temperatures of up to 3301 K, and a quantum efficiency as high as 51.2%. These results revealed that we managed to obtain good white emitting phosphors by co-doping Ba3Ce(PO4)3 with Tb3+ and Mn2+/Sm3+.
3d space group. Energy can be transferred from Ce3+ to Tb3+/Mn2+/Sm3+ in Ba3Ce(1−x)(PO4)3:xTb3+, Ba3Ce(1−y)(PO4)3:yMn2+, and Ba3Ce(1−z)(PO4)3:zSm3+ phosphors. Furthermore, the color of these phosphors can turn from cyan to green, blue to red, and cyan to pale pink. When Ba3Ce(PO4)3 was co-doped with Tb3+ and Mn2+/Sm3+, Tb3+ could also transfer part of its energy to Mn2+/Sm3+, and more importantly, a white emission can be achieved based on this energy transfer. The phosphors exhibited a good thermal stability, with correlated color temperatures of up to 3301 K, and a quantum efficiency as high as 51.2%. These results revealed that we managed to obtain good white emitting phosphors by co-doping Ba3Ce(PO4)3 with Tb3+ and Mn2+/Sm3+.
 
                




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