STUDY OF K2SiF6:Mn4+@SiO2 PHOSPHOR FOR WHITE LEDS WITH HIGH ANGULAR COLOR UNIFORMITY

Sang Dang Ho, N. Loan, Hsiao Yi Lee, N. D. Quoc Anh
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Abstract

The distinctive wide-band blue illumination absorption and red strait-line discharge of the phosphor K2SiF6:Mn4+ (KMnSF) make it an attractive material for manufacturing warm white light-emitting diodes (WLED). Nevertheless, using the highly corrosive raw ingredient HF to produce commercial KMnSF red phosphor has negative effects on the environment and people. In this study, microfluidic technology was used to successfully manufacture the KMnSF without the need for HF compound while resulting in a phosphor product with homogenous granule shape and size. The luminescence capabilities of the KMnSF samples were then thoroughly examined and characterized. Eventually, we made WLED packages comprising of blue LED chips, yellow phosphor Y3Al5O12:Ce3+ (YGA:Ce), red phosphor KMnSF, and SiO2 scattering particle. Via varying the SiO2 concentration during the simulation process, the prepared WLED’s optical performances are obtained. The scattering properties of the phosphor layer as well as the lighting transmission and distribution were simulated with the utilization of both LightTools software and Monte Carlo theory. According to the outcomes, the microfluidic-synthesized K2SiF6:Mn4+ proves to be appropriate for WLED apparatuses. Besides, the proposed phosphor compound with SiO2 scattering particles showed the improvement in luminous flux and angular uniformity of the WLED.
研究 K2SiF6:Mn4+@SiO2 PHOSPHOR 在白光 LED 中的应用,以实现高角度色彩均匀性
荧光粉 K2SiF6:Mn4+ (KMnSF) 具有独特的宽带蓝色照明吸收和红色直线放电特性,是制造暖白光发光二极管 (WLED) 的理想材料。然而,使用高腐蚀性原料 HF 生产商用 KMnSF 红色荧光粉会对环境和人类造成负面影响。在这项研究中,利用微流体技术成功地生产出了 KMnSF,无需使用 HF 复合物,同时还生产出了颗粒形状和大小均一的荧光粉产品。随后,我们对 KMnSF 样品的发光能力进行了全面的检查和表征。最终,我们制成了由蓝色 LED 芯片、黄色荧光粉 Y3Al5O12:Ce3+ (YGA:Ce)、红色荧光粉 KMnSF 和二氧化硅散射颗粒组成的 WLED 封装。通过在模拟过程中改变 SiO2 的浓度,可以获得所制备 WLED 的光学性能。利用 LightTools 软件和蒙特卡洛理论模拟了荧光粉层的散射特性以及照明的传输和分布。结果表明,微流控合成的 K2SiF6:Mn4+ 适用于 WLED 设备。此外,所提出的带有二氧化硅散射粒子的荧光粉化合物还改善了 WLED 的光通量和角度均匀性。
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