荧光粉
材料科学
生产(经济)
环境科学
光电子学
宏观经济学
经济
作者
Jingzhu Chen,Wei Zhao,Yongzheng Fang,Yufeng Liu,Zhifu Liu,Langping Dong,Jingshan Hou
标识
DOI:10.1016/j.optmat.2022.112781
摘要
The K 2 SiF 6 :Mn 4+ red phosphor has caused widespread concern in warm white light-emitting diodes (WLEDs) due to its unique broadband blue light absorption and narrow-band red emission. However, commercial K 2 SiF 6 :Mn 4+ red phosphor inevitably needs to use extremely corrosive HF as a raw material, which will cause great harm to the environment and human beings. In this work, the K 2 SiF 6 :Mn 4+ phosphor with highly uniform particle shape and size was successfully synthesized without using HF solution through microfluidic technology. The structure, morphology and photoluminescence properties of the K 2 SiF 6 :Mn 4+ phosphors prepared in this work were systematically investigated and analyzed. The K 2 SiF 6 :Mn 4+ phosphors synthesized by microfluidic technology are all cubic particles. The sample was the most uniform with a particle size of about 4.14 μm when the pipe diameter was 4 mm and the injection speed was 1000 μL/min, and the number of active Mn 4+ in this sample is the largest according to the calculation results, resulting in its maximum luminous intensity. Finally, a warm WLED with low CCT (3379 K) and high CRI (R a = 89.7) was fabricated by combining the as-prepared red K 2 SiF 6 :Mn 4+ phosphor with yellow phosphor YAG:Ce 3+ and blue LED chip. The results indicate that the K 2 SiF 6 :Mn 4+ phosphor prepared by the proposed green continuous route is suitable for WLEDs. • K 2 SiF 6 :Mn 4+ red phosphor was successfully synthesized without using HF solution. • The morphology and size of the sample particles synthesized by the microfluidic technology are highly uniform. • By using the prepared K 2 SiF 6 :Mn 4+ red phosphor, a warm WLED with low CCT (3379 K) and high CRI (R a = 89.7) was obtained.
科研通智能强力驱动
Strongly Powered by AbleSci AI