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首页> 外文期刊>Journal of the European Ceramic Society >Lu3Al5O12:Ce@SiO2 phosphor-in-glass: Its facile synthesis, reduced thermal/chemical degradation and application in high-power white LEDs
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Lu3Al5O12:Ce@SiO2 phosphor-in-glass: Its facile synthesis, reduced thermal/chemical degradation and application in high-power white LEDs

机译:Lu3Al5O12:Ce @ SiO2玻璃中的磷光体:易于合成,减少的热/化学降解以及在大功率白光LED中的应用

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Phosphor-in-glass (PiG) approach draws great attention because polymer encapsulants can be avoided during the wLEDs fabrication. However, phosphor degradation occurs, primarily in co-sintering process (with glass) which significantly reduces the emission intensity of the PiG. The aim of the present study is to develop a thermally/chemically robust color converter. Lu3Al5O12:Ce@SiO(2)core-shell structure was proposed to reduce phosphor degradation during the PiG fabrication. Uniform SiO2 shell with tunable thickness was obtained via a facile process. For the PiG samples sintered at 680 degrees C for 30 min, internal QE of the Lu3Al5O12:Ce@SiO2 based PiG retained 59% of the initial value which was obviously higher than that of the pristine Lu3Al5O12:Ce based PiG (48%). A high-power wLED was constructed by coupling the PiG plate with a 440 nm InGaN blue chip. Under a driving current of 500 mA, the device showed a luminous efficacy of 1291m/W. (C) 2016 Published by Elsevier Ltd.
机译:玻璃荧光粉(PiG)方法引起了人们的极大关注,因为在wLED的制造过程中可以避免使用聚合物密封剂。然而,主要在共烧结过程中(与玻璃一起)发生磷光体降解,这会大大降低PiG的发射强度。本研究的目的是开发一种热/化学稳定的色彩转换器。 Lu3Al5O12:Ce @ SiO(2)核-壳结构被提出来减少磷化镓制造过程中磷光体的降解。通过简便的方法获得了厚度可调的均匀SiO2壳。对于在680摄氏度下烧结30分钟的PiG样品,基于Lu3Al5O12:Ce @ SiO2的PiG的内部QE保留了初始值的59%,明显高于原始的基于Lu3Al5O12:Ce的PiG(48%)。通过将PiG板与440 nm InGaN蓝芯片耦合来构建高功率wLED。在500 mA的驱动电流下,该器件的发光效率为1291m / W。 (C)2016由Elsevier Ltd.出版

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