Lee Yl Kwon, Kim Yoon Hwa, Heo Jong, Im Won Bin, Chung Woon Jin
Opt Lett. 2014 Jul 15;39(14):4084-7. doi: 10.1364/OL.39.004084.
Phosphor-in-glass (PiG) color converters for LED applications were fabricated with a mixture of phosphors, Y₃Al₅O₁₂:Ce³⁺ (yellow) and CaAlSiN₃:Eu²⁺ (red). The low sintering temperature (550°C) of SiO₂-Na₂O-RO (R=Ba, Zn) glass powder enabled the inclusion of CaAlSiN₃:Eu²⁺ (red) phosphor which cannot be embedded with conventional glass powders for PiGs. By simply varying the mixing ratio of glass to phosphors as well as the ratio of yellow to red phosphors, the facile control of the CIE chromaticity coordinates and correlated color temperature of the LED following the Planckian locus has been achieved. Phosphors were well distributed within the glass matrix without noticeable reactions, preserving the enhanced thermal quenching property of the PiG compared to those with silicone resins, for LEDs.
用于LED应用的玻璃中磷光体(PiG)颜色转换器是用磷光体Y₃Al₅O₁₂:Ce³⁺(黄色)和CaAlSiN₃:Eu²⁺(红色)的混合物制成的。SiO₂-Na₂O-RO(R = Ba、Zn)玻璃粉的低烧结温度(550°C)使得能够加入CaAlSiN₃:Eu²⁺(红色)磷光体,而这种磷光体不能用传统的PiG玻璃粉嵌入。通过简单地改变玻璃与磷光体的混合比例以及黄色与红色磷光体的比例,已实现了对遵循普朗克轨迹的LED的CIE色度坐标和相关色温的简便控制。磷光体在玻璃基质中分布良好,没有明显的反应,与用于LED的有机硅树脂相比,PiG保留了增强的热猝灭特性。