Zhang Yuting, Ye Yuting, Zhao Guoying, Liu Yufeng, Liu Lili, Qiao Xin, Wang Zhongzhi, Li Bo, Sun Hong-Tao, Li Ji-Guang, Hou Jingshan, Wang Feng, Fang Yongzheng
School of Materials Science and Engineering, Shanghai Institute of Technology, Shanghai 201418, PR China.
Baotou Research Institute of Rare Earths, Baotou 014030, China.
Inorg Chem. 2024 May 13;63(19):8889-8898. doi: 10.1021/acs.inorgchem.4c00850. Epub 2024 May 2.
Phosphor-in-glass represents a promising avenue for merging the luminous efficiency of high-quality phosphor and the thermal stability of a glass matrix. Undoubtedly, the glass matrix system and its preparation are pivotal factors in achieving high stability and preserving the original performance of embedded phosphor particles. In contrast to the well-established commercial YAlO:Ce oxide phosphor, red nitride phosphor, which plays a critical role in high-quality lighting, exhibits greater structural instability during the high-temperature synthesis of inorganic glasses. A telluride glass with a refractive index (RI = 2.15@615 nm) akin to that of nitride phosphor (∼2.19) has been devised, demonstrating high efficiency in photon utilization. The lower glass-transition temperature plays a crucial role in safeguarding phosphor particles against erosion resulting from exposure to high-temperature melts. Phosphor-in-glass retains 93% of the quantum efficiency observed for pure phosphor. The assembled white light-emitting diodes module has precise color tuning capabilities, achieving an optimal color rendering index of 93.7, a luminous efficacy of 80.4 lm/W, and a correlated color temperature of 5850 K. These outcomes hold potential for advancing the realm of inorganic package and high-quality white light illumination.
玻璃封装荧光粉是一种很有前景的途径,可将高质量荧光粉的发光效率与玻璃基质的热稳定性相结合。毫无疑问,玻璃基质体系及其制备是实现高稳定性和保持嵌入荧光粉颗粒原始性能的关键因素。与成熟的商用YAlO:Ce氧化物荧光粉相比,在高质量照明中起关键作用的红色氮化物荧光粉在无机玻璃的高温合成过程中表现出更大的结构不稳定性。已设计出一种碲化物玻璃,其折射率(RI = 2.15@615 nm)与氮化物荧光粉的折射率(约2.19)相近,在光子利用方面显示出高效率。较低的玻璃转变温度在保护荧光粉颗粒免受高温熔体侵蚀方面起着关键作用。玻璃封装荧光粉保留了纯荧光粉93%的量子效率。组装好的白光发光二极管模块具有精确的颜色调节能力,实现了93.7的最佳显色指数、80.4 lm/W的发光效率和5850 K的相关色温。这些成果在推进无机封装和高质量白光照明领域方面具有潜力。