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Design of a Yellow-Emitting Phosphor with Enhanced Red Emission via Valence State-control for Warm White LEDs Application

机译:通过价态控制增强红色发射的发黄光的荧光粉设计适用于暖白色LED应用

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摘要

The phosphor-converted warm W-LED have being rapidly developed due to the stringent requirements of general illumination. Here, we utilized a strategy to synergistically enhance the red region and emission intensity of novel Eu-activated yellow-emitting LaSiO2N phosphors. This was realized by predicting optimum crystal structure, and governing the concentration of doping ions as well as preparation temperature. By using these straight-forward methods, we were able to vary the valence to enhance the red region and improve the quantum efficiency of LaSiO2N phosphor. The warm W-LED lamp fabricated with this red region enhanced LaSiO2N:Eu phosphor exhibited high CRI (Ra = 86), suitable CCT (5783 K) and CIE chromaticity (0.33, 0.36), indicating this synergistically enhanced strategy could be used for design of yellow-emitting phosphor materials to obtain warm W-LEDs.
机译:由于普通照明的严格要求,荧光粉转换的暖色W-LED已得到迅速发展。在这里,我们利用一种策略来协同增强新型Eu激活的发黄光LaSiO2N荧光粉的红色区域和发射强度。这是通过预测最佳晶体结构并控制掺杂离子的浓度以及制备温度来实现的。通过使用这些简单的方法,我们能够改变化合价以增强红色区域并提高LaSiO2N荧光粉的量子效率。用这种红色区域增强的LaSiO2N:Eu荧光粉制成的暖色W-LED灯具有较高的CRI(Ra = 86),合适的CCT(5783 K)和CIE色度(0.33,0.36),表明该协同增强的策略可用于设计。发射黄光的荧光粉材料以获得温暖的W-LED。

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