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Ultra-High Thermal-Stable Glass Phosphor Layer for Phosphor-Converted White Light-Emitting Diodes

机译:用于磷光转换的白光发光二极管的超高热稳定性玻璃磷光层

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摘要

A glass phosphor layer with ultra-high thermal stability appropriate for phosphor-converted white light-emitting diodes (PC-WLEDs) is demonstrated. The results showed PC-WLEDs utilizing the high thermal stable glass phosphor maintained good thermal stability in lumen, chromaticity, and transmittance characteristics under the thermal aging condition up to 350 $^{circ}{hbox{C}}$. This is a considerable high operating temperature for a phosphor layer in the PC-WLEDs. The lumen degradation, chromaticity shift, and transmittance loss in the glass-based PC-WLEDs under thermal aging at 150 $^{circ}{hbox{C}}$ , 250 $^{circ}{hbox{C}}$ , 350 $^{circ}{hbox{C}}$ , and 450 $^{circ}{hbox{C}}$ are also presented and compared with those of silicone-based PC-WLEDs under thermal aging at 150 $^{circ}{hbox{C}}$ and 250 $^{circ}{hbox{C}}$ . The result clearly demonstrated that the glass-based PC-WLEDs exhibited better thermal stability in lumen degradation, chromaticity shift, and transmittance loss than the silicone-based PC-WLEDs. The advantages of glass encapsulation in high-temperature operation of the PC-WLEDs could be explained that the glass transition temperature of the glass phosphor (567 $ ^{circ}{hbox{C}}$) was much higher than it of silicone (150 $ ^{circ}{hbox{C}}$). The newly developed ultra-high thermal-stable glass is essentially critical to the application of LED mo- ules in the area where the high-power, high-temperature and absolute reliability are required for use in the next-generation solid-state lighting.
机译:对适用于荧光体转换的白色发光二极管(PC-WLED)的具有超高热稳定性的玻璃荧光体层进行了说明。结果表明,利用高热稳定性玻璃磷光体的PC-WLED在高达350°C的热老化条件下保持了良好的流明,色度和透射率特性的热稳定性。 ^ {circ} {hbox {C}} $ 。对于PC-WLED中的荧光粉层来说,这是相当高的工作温度。玻璃基PC-WLED在150°C的热老化下的流明衰减,色度变化和透射率损失<公式> typetype =“ inline”> $ ^ {circ} {hbox {C}} $ ,250 $ ^ {circ} {hbox {C}} $ ,350 <公式Formulatype =“ inline”> $ ^ {circ} {hbox {C}} $ 和450 $ ^ {circ} {hbox {C}} $ ,并将其与在150 $ ^ {circ} {hbox {C}} $ 和250个 $ ^ { circ} {hbox {C}} $ 。该结果清楚地表明,与基于硅的PC-WLED相比,基于玻璃的PC-WLED在流明降低,色度偏移和透射率损失方面表现出更好的热稳定性。可以解释在PC-WLED的高温操作中玻璃封装的优点,即玻璃磷光体的玻璃化转变温度(567 <公式公式类型=“ inline”> $ ^ {circ} {hbox {C}} $ )比硅酮(150 $ ^ {circ} {hbox {C }} $ )。对于需要在下一代固态照明中使用大功率,高温和绝对可靠性的区域中的LED模块,新开发的超高热稳定性玻璃至关重要。

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