材料科学
发光
热稳定性
荧光粉
透射率
玻璃化转变
兴奋剂
硅酸盐
化学工程
还原气氛
复合材料
分析化学(期刊)
矿物学
光电子学
冶金
聚合物
化学
工程类
色谱法
作者
Xiao Ma,Zhifeng Huang,Hailong Yuan,Xiangyu Lu,Yujuan Zhou,Qiang Shen,Fei Chen
摘要
Abstract The traditional model for wLEDs usually encapsulates the phosphor and resin mixture on the InGaN blue‐emitting chip. However, the poor thermal stability of silicone resin will lead to the reduction of the luminescent intensity of the wLED devices. Glass has excellent thermal stability and transparency, which is a promising alternative to resins. In this work, Ce‐doped silicate luminescent glasses have been developed by a high‐temperature melting quenching method in air atmosphere. The luminescent intensity can be enhanced by increasing the heat treatment temperature and extending the heat treatment time in 10%H 2 /Ar atmosphere because Ce 4+ ions can be reduced to Ce 3+ ions. However, when the heat treatment temperature reaches 850°C, the generation of precipitates in the glass can reduce the luminescent intensity. The transmittance of glass can reach 87%, and the highest luminous intensity obtained when heat treated at 800°C. The glass transition temperature is 740°C and the thermal conductivity of the glass is .95 W m −1 K −1 , which is about five times higher than that of resin. The results show that the emerging Ce‐doped silicate luminescent glass could be the potential material for wLED applications.
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