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Effect of phosphor composition and packaging structure of flexible phosphor films on performance of white LEDs

机译:柔性荧光粉膜的荧光粉组成和封装结构对白色LED性能的影响

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摘要

YAG:Ce3+ phosphor and CASN:Eu2+ phosphor were synthesized by conventional solid-state reaction, and the phosphor films were prepared from the synthesized YAG:Ce3+ phosphor and CASN:Eu2+ phosphor by a simple spin coating method. The influence on the concentration of the red phosphor and the different packaging structure of the phosphor films on the optical and electrical properties of white LEDs were investigated. The red and green phosphor were coated layer by layer to investigate the spectral absorption effect of phosphors in the films. The phosphor film placing green phosphor adjacent to the chips is named as G-R structure, likewise, the red phosphor close to the chips is labeled as R-G structure. The results show that the emission spectra of the phosphor films with G-R structure exhibit obvious red shift with the increase of the proportions of red phosphor due to the red phosphor have a reabsorption effect on the green light. Then, the phosphor films with G-R and R-G structures were packaged on the LED respectively, and the light efficiency and the correlated color temperature (CCT) of the LEDs gradually decrease with the increase of the proportions of red phosphor. The luminous efficacy of LEDs packaged by G-R structured phosphor film is higher than that of LEDs packaged by R-G structured phosphor film. The luminous efficiency of LEDs packaged by G-R structured phosphor film can reach 128.95lm/W, the CCT is 4458K, and the CRI is 65.1. Moreover, the CCT uniformity of LEDs packaged by G-R structured phosphor film is superior to that of LEDs packaged by R-G structured phosphor film. Therefore, the G-R structured phosphor film has potential application values for improving the luminous efficiency and light uniformity of the device.
机译:通过常规固相反应合成了YAG:Ce3 +荧光粉和CASN:Eu2 +荧光粉,并通过简单的旋涂方法从合成的YAG:Ce3 +荧光粉和CASN:Eu2 +荧光粉制备了荧光粉膜。研究了红色荧光粉浓度和荧光粉薄膜不同封装结构对白色LED光学和电学性能的影响。将红色和绿色磷光体逐层涂覆以研究膜中磷光体的光谱吸收效果。将绿色荧光粉与芯片相邻放置的荧光粉膜称为G-R结构,同样,将靠近芯片的红色荧光粉标记为R-G结构。结果表明,由于红色荧光粉对绿光具有重吸收作用,因此随着红色荧光粉比例的增加,具有G-R结构的荧光粉薄膜的发射光谱呈现明显的红移。然后,将具有G-R和R-G结构的磷光体膜分别封装在LED上,并且随着红色磷光体的比例增加,LED的光效率和相关色温(CCT)逐渐降低。由G-R结构的磷光体膜封装的LED的发光效率高于由R-G结构的磷光体膜封装的LED的发光效率。采用G-R结构荧光粉封装的LED的发光效率可以达到128.95lm / W,CCT为4458K,CRI为65.1。而且,由G-R结构的磷光体膜封装的LED的CCT均匀性优于由R-G结构的磷光体膜封装的LED的CCT均匀性。因此,G-R结构的磷光体膜具有用于改善器件的发光效率和光均匀性的潜在应用价值。

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