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首页> 外文期刊>Chemical engineering journal >A thermally stable warm WLED obtained by screen-printing a red phosphor layer on the LuAG:Ce3+ PiG substrate
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A thermally stable warm WLED obtained by screen-printing a red phosphor layer on the LuAG:Ce3+ PiG substrate

机译:通过在LuAG:Ce3 + PiG基板上丝网印刷红色荧光粉层而获得的热稳定的暖色WLED

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摘要

Currently, phosphor-in-glass (PiG) approach draws great attention because of its excellent thermal resistance and facile process in WLED fabrication. However, the red light deficiency results in high correlated color temperature (CCT) and low color rendering index (CRI) in white light-emitting diode (WLED). Herein, a new LuAG:Ce3+ phosphor-in-glass (Lu-PiG) combining with the CaAlSiN3:Eu2+ red phosphor layer was synthesized by the low temperature co-sintering and screen-printing techniques, which was experimentally demonstrated to replace the conventional polymer-based phosphor converter and realized the chromaticity tuning for LuAG:Ce3+ phosphor with WLED. The Lu-PiG constructed WLED exhibited excellent thermal stability, but it still showed a typical cold white light resulting from the absence of red light component. Therefore, a stacking geometric configuration by screen-printing a red phosphor layer on the Lu-PiG substrate (R&Lu-PiG) was designed to solve red deficiency problem. The R&Lu-PiG color converter showed an excellent thermal stability with only 8.2% emission loss compared to the Lu-PiG when elevating temperature from 303 K to 433 K. By adjusting the CaAlSiN3:Eu2+ phosphor content in the layer, we obtained a high-performance warm WLED with a luminous efficacy of 102.1 lm/W, a CCT of 3410 K and a CRI of 76.5 under 20 mA current driving. Thus, it is expected that this developed R&Lu-PiG color converters could have large potential applications in high-power warm WLED. (C) 2016 Elsevier B.V. All rights reserved.
机译:目前,玻璃荧光粉(PiG)方法因其出色的耐热性和WLED制造中的简便工艺而备受关注。但是,红光不足会导致白光发光二极管(WLED)的相关色温(CCT)高,显色指数(CRI)低。在此,通过低温共烧结和丝网印刷技术合成了一种新的LuAG:Ce3 +玻璃中荧光粉(Lu-PiG)和CaAlSiN3:Eu2 +红色荧光粉层,并通过实验证明了它可以替代常规聚合物荧光粉转换器,并实现了带WLED的LuAG:Ce3 +荧光粉的色度调整。 Lu-PiG构造的WLED表现出出色的热稳定性,但由于没有红光成分,仍然显示出典型的冷白光。因此,通过在Lu-PiG衬底(R&Lu-PiG)上丝网印刷红色磷光体层而设计了堆叠几何构造,以解决红色缺陷问题。当将温度从303 K升高到433 K时,R&Lu-PiG彩色转换器显示出优异的热稳定性,与Lu-PiG相比仅具有8.2%的发射损耗。通过调节层中的CaAlSiN3:Eu2 +荧光粉含量,我们获得了较高的性能良好的WLED,在20 mA电流驱动下的发光效率为102.1 lm / W,CCT为3410 K,CRI为76.5。因此,可以预期的是,这种研发的R&Lu-PiG色彩转换器在大功率暖色WLED中具有广阔的应用前景。 (C)2016 Elsevier B.V.保留所有权利。

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