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Highly Thermally Stable Single-Component White-Emitting Silicate Glass for Organic-Resin-Free White-Light-Emitting Diodes

机译:用于无有机树脂的白光发光二极管的高度热稳定的单组分白光硅酸盐玻璃

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Thermal management is still a great challenge for high-power phosphor-converted white-light-emitting diodes (pc-WLEDs) intended for future general lighting. In this paper, a series of single-component white-emitting silicate SiO2—Li2O—SrO—Al2O3—K2O— P2O5: Ce~(3+), Tb~(3+), Mn~(2+) (SLSAKP: Ce~(3+), Tb~(3+), Mn~(2+)) glasses that simultaneously play key roles as a luminescent convertor and an encapsulating material for WLEDs were prepared via the conventional melt-quenching method, and systematically studied using their absorption spectra, transmittance spectra, photoluminescence excitation and emission spectra in the temperature range 296— 498 K, decay curves, and quantum efficiency. The glasses show strong and broad absorption in 250—380 nm region and exhibit intense white emission, produced by in situ mixing of blue-violet, green, and orange-red light from Ce~(3+), Tb~(3+), and Mn~(2+) ions, respectively, in a single glass component. The quantum efficiency of SLSAKP: 0.3%Ce~(3+), 2.0%Tb~(3+), 2.0%Mn~(2+) glass is determined to be 19%. More importantly, this glass shows good thermal stability, exhibiting at 373 and 423 K about 84.56 and 71.02%, respectively, of the observed room temperature (298 K) emission intensity. The chromaticity shift of SLSAKP: 0.3% Ce~(3+), 2.0%Tb~(3+), 2.0%Mn~(2+) is 2.94 X 10~(-2) at 498 K, only 57% of the commercial triple-color white-emitting phosphor mixture. Additionally, this glass shows no transmittance loss at the 370 nm emission of a UV-Chip-On-Board (UV-COB) after thermal aging for 240 h, compared with the 82% transmittance loss of epoxy resin. The thermal conductivity of the glass is about 1.07 W/ mK, much larger than the 0.17 W/mK of epoxy resin. An organic-resin-free WLEDs device based on SLSAKP: 0.3%Ce~(3+), 2.0% Tb~(3+), 2.0%Mn~(2+) glass and UV-COB is successfully demonstrated. All of our results demonstrate that the presented Ce~(3+)/Tb~(3+)/ Mn~(2+) tridoped lithium—strontium—silicate glass may serve as a promising candidate for high-power WLEDs.
机译:对于打算用于未来普通照明的大功率磷光转换白光发光二极管(pc-WLED),热管理仍然是一个巨大的挑战。本文研究了一系列单组分白色发光硅酸盐SiO2-Li2O-SrO-Al2O3-K2O-P2O5:Ce〜(3+),Tb〜(3+),Mn〜(2+)(SLSAKP:Ce通过常规的熔融淬火方法制备了同时起着发光转换器和WLED封装材料作用的〜(3 +),Tb〜(3 +),Mn〜(2+))玻璃,并使用它们在296-498 K温度范围内的吸收光谱,透射光谱,光致发光激发和发射光谱,衰减曲线和量子效率。玻璃是通过原位混合Ce〜(3 +),Tb〜(3+)的蓝紫色,绿色和橙红色光产生的,在250-380 nm区域显示强而宽的吸收,并显示出强烈的白色发射。在单个玻璃组件中分别含有,和Mn〜(2+)离子。 SLSAKP的量子效率:0.3%Ce〜(3 +),2.0%Tb〜(3 +),2.0%Mn〜(2+)玻璃确定为19%。更重要的是,这种玻璃表现出良好的热稳定性,在373 K和423 K时分别表现出所观察到的室温(298 K)发射强度的84.56%和71.02%。 SLSAKP的色度偏移在498 K时为0.3%Ce〜(3 +),2.0%Tb〜(3 +),2.0%Mn〜(2+)为2.94 X 10〜(-2),仅为SLSAKP的57%市售三色发白光的荧光粉混合物。此外,与老化时间为82%的环氧树脂相比,该玻璃在热老化240小时后在370nm发射的板上载紫外线芯片(UV-COB)上没有显示出透射率损失。玻璃的热导率约为1.07 W / mK,远大于环氧树脂的0.17 W / mK。成功地证明了基于SLSAKP的无有机树脂WLED器件:0.3%Ce〜(3 +),2.0%Tb〜(3 +),2.0%Mn〜(2+)玻璃和UV-COB。我们所有的结果表明,提出的三掺杂的Ce〜(3 +)/ Tb〜(3 +)/ Mn〜(2+)锂-锶-硅酸盐玻璃可以作为大功率WLED的有希望的候选者。

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