Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.
Inorg Chem. 2009 Dec 21;48(24):11525-32. doi: 10.1021/ic900809b.
On the basis of the structural information that the host material has excellent charge stabilization, blue-emitting Ca(6-x-y)Mg(x)(PO(4))(4):Eu(y)(2+) (CMP:Eu(2+)) phosphors were synthesized and systematically optimized, and their photoluminescence (PL) properties were evaluated. Depending upon the amount of Mg added, the emission efficiency of the phosphors could be enhanced. The substitution of Eu(2+) affected their maximum wavelength (lambda(max)) and thermal stability because the substitution site of Eu(2+) could be varied. To obtain single-phase two-color-emitting phosphors, we incorporated Mn(2+) into CMP:Eu(2+) phosphors. Weak red emission resulting from the forbidden transition of Mn(2+) could be enhanced by the energy transfer from Eu(2+) to Mn(2+) that occurs because of the spectral overlap between the photoluminescence excitation (PLE) spectrum of Mn(2+) and the PL spectrum of Eu(2+). The energy transfer process was confirmed by the luminescence spectra, energy transfer efficiency, and decay curve of the phosphors. Finally, the optimized Ca(6-x-y)Mg(x-z)(PO(4))(4):Eu(y)(2+),Mn(z)(2+) (CMP:Eu(2+),Mn(2+)) phosphors were applied with green emitting Ca(2)MgSi(2)O(7):Eu(2+) (CMS:Eu(2+)) phosphors to ultraviolet (UV) light emitting diode (LED)-pumped white LEDs. The CMS:Eu(2+)-mixed CMP:Eu(2+), Mn(2+)-based white LEDs showed an excellent color rendering index (CRI) of 98 because of the broader emission band and more stable color coordinates than those of commercial Y(3)Al(5)O(12):Ce(3+) (YAG:Ce(3+))-based white LEDs under a forward bias current of 20 mA. The fabricated white LEDs showed very bright natural white light that had the color coordinate of (0.3288, 0.3401), and thus CMP:Eu(2+),Mn(2+) could be regarded as a good candidate for UV LED-based white LEDs.
基于主体材料具有优异的电荷稳定化结构信息,合成并系统优化了蓝色发射的 Ca(6-x-y)Mg(x)(PO(4))(4):Eu(y)(2+) (CMP:Eu(2+)) 荧光粉,并评估了其光致发光(PL)性能。根据添加的 Mg 量,荧光粉的发射效率可以提高。Eu(2+)的取代会影响它们的最大波长(lambda(max))和热稳定性,因为 Eu(2+)的取代位置可以改变。为了获得单相双色发射荧光粉,我们将 Mn(2+)掺入 CMP:Eu(2+)荧光粉中。由于 Mn(2+)的禁戒跃迁,弱的红色发射可以通过 Eu(2+)到 Mn(2+)的能量转移得到增强,这是由于 Mn(2+)的光致发光激发(PLE)光谱和 Eu(2+)的 PL 光谱之间的光谱重叠引起的。通过荧光光谱、能量转移效率和荧光粉的衰减曲线证实了能量转移过程。最后,优化后的 Ca(6-x-y)Mg(x-z)(PO(4))(4):Eu(y)(2+),Mn(z)(2+) (CMP:Eu(2+),Mn(2+)) 荧光粉与绿色发射 Ca(2)MgSi(2)O(7):Eu(2+) (CMS:Eu(2+)) 荧光粉一起应用于紫外(UV)发光二极管(LED)泵浦的白光 LED。CMS:Eu(2+)-混合 CMP:Eu(2+), Mn(2+)-基于白光 LED 的显色指数(CRI)为 98,因为与商用 Y(3)Al(5)O(12):Ce(3+) (YAG:Ce(3+))-基于白光 LED 相比,它具有更宽的发射带和更稳定的色坐标正向偏置电流为 20 mA。所制备的白光 LED 发出非常明亮的自然光,其色坐标为(0.3288, 0.3401),因此 CMP:Eu(2+),Mn(2+) 可以被视为基于 UV LED 的白光 LED 的良好候选材料。