发红光Mg2TiO4: Mn4+荧光粉对双层远端荧光粉结构颜色质量的影响

Hsiao-Yi Lee, P. X. Le, Doan Quoc Anh Nguyen
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引用次数: 2

摘要

在光通量方面,远端荧光粉结构优于共形荧光粉结构或杯内荧光粉结构,但这种结构的色彩质量往往不如其他结构。因此,已经进行了许多研究来寻找解决上述缺点的方法。在本研究中,我们采用色温为5600 K的wled结构,并得出双层荧光粉结构可以提高显色指数(CRI)和色质尺度(CQS)的结论。本研究的概念是将红色荧光粉层Mg2TiO4:Mn4+放置在黄色荧光粉层YAG:Ce3+上,并找到能使颜色质量达到最高值的Mg2TiO4:Mn4+浓度。结果表明,Mg2TiO4:Mn4+有利于wled的CRI和CQS,其中Mg2TiO4:Mn4+的加入提高了wled的红光成分,从而提高了CRI和CQS。然而,通过应用mie散射理论和Lambert-Beer定律证明,当Mg2TiO4:Mn4+浓度超过极限时,会对wled的光通量造成损害。这一研究结果对改进制造白光质量更好的wled的技术有重要贡献。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
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The Impacts of Red-emitting Mg2TiO4: Mn4+ Phosphor on Color Quality of Dual-layer Remote Phosphor Configuration
In terms of luminous flux, the remote phosphor structure is better than conformal structure or in-cup phosphor structure, however, this structure often has inferior color quality compared to the others. As a result, many studies have been conducted to nd a solution to the drawback mentioned above. In this research, we are after the same goal using WLEDs structure with color temperature of 5600 K and come to the conclusion that dual-layer phosphor structure can improve the color rendering index (CRI) and the color quality scale (CQS). The concept of the research is to place red phosphor layer Mg2TiO4:Mn4+ on a yellow phosphor layer YAG:Ce3+ and locate the concentration of Mg2TiO4:Mn4+ that allows the color quality to reach the highest value. The result shows that Mg2TiO4:Mn4+ benets CRI and CQS, more specifically, the addition of Mg2TiO4:Mn4+ in WLEDs boosts the red light component, thus, enhancing CRI and CQS. However, it is demonstrated through the application of Mie-scattering theory and Lambert-Beer law that when the concentration of Mg2TiO4:Mn4+ exceed the limit, it can harm the luminous flux of WLEDs. The result of this research is a valuable contribution to improving the techniques of manufacturing better WLEDs with higher white light quality.  This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
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