Xu Mengjiao, Wang Luxiang, Jia Dianzeng, Zhao Hongyang
Key Laboratory of Material and Technology for Clean Energy, Ministry of Education, Key Laboratory of Advanced Functional Materials, Autonomous Region, Institute of Applied Chemistry, Xinjiang University, Urumqi 830046, Xinjiang, P. R. China.
Phys Chem Chem Phys. 2015 Nov 21;17(43):28802-8. doi: 10.1039/c5cp04092b.
A series of Ce(3+)/Tb(3+) co-doped MgZn2(PO4)2 phosphors have been synthesized by the co-precipitation method. Their structure, morphology, photoluminescence properties, decay lifetime, thermal stability and luminous efficiency were investigated. The possible energy transfer mechanism was proposed based on the experimental results and detailed luminescence spectra and decay curves of the phosphors. The critical distance between Ce(3+) and Tb(3+) ions was calculated by both the concentration quenching method and the spectral overlap method. The energy transfer mechanism from the Ce(3+) to Tb(3+) ion was determined to be dipole-quadrupole interaction, and the energy transfer efficiency was 85%. By utilizing the principle of energy transfer and appropriate tuning of Ce(3+)/Tb(3+) contents, the emission color of the obtained phosphors can be tuned from blue to green light. The MgZn2(PO4)2:Ce(3+),Tb(3+) phosphor is proved to be a promising UV-convertible material capable of green light emitting in UV-LEDs due to its excellent thermal stability and luminescence properties.
采用共沉淀法合成了一系列Ce(3+)/Tb(3+)共掺杂的MgZn2(PO4)2荧光粉。研究了它们的结构、形貌、光致发光性能、衰减寿命、热稳定性和发光效率。基于实验结果以及荧光粉详细的发光光谱和衰减曲线,提出了可能的能量转移机制。通过浓度猝灭法和光谱重叠法计算了Ce(3+)和Tb(3+)离子之间的临界距离。确定了从Ce(3+)到Tb(3+)离子的能量转移机制为偶极-四极相互作用,能量转移效率为85%。利用能量转移原理并适当调节Ce(3+)/Tb(3+)含量,可使所得荧光粉的发射颜色从蓝色调至绿色。MgZn2(PO4)2:Ce(3+),Tb(3+)荧光粉因其优异的热稳定性和发光性能,被证明是一种有前途的可用于紫外发光二极管中发出绿光的紫外转换材料。