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White LED Packaging with Layered Encapsulation of Quantum Dots and Optical Properties

机译:白光LED封装,具有量子点和光学特性的分层封装

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摘要

The preparation method of encapsulating paste containing YAG phosphor and red quantum dot(QD) in silicone resin and the structure of phosphor layers were studied from the view point of improving both the efficiency and color rendering index (CRI) of the phosphor converted white LED (pcWLED). The addition of red phosphor or red QD in addition to the YAG phosphor could increase CRI of the pcWLED, but the efficiency was decreased. The pcWLED packaged with the encapsulant where the red QD was mixed in advance with the part of the silicone resin and mixed again with the YAG phosphor dispersed the remaining in silicone resin exhibited higher CRI and efficiency than the one packaged with one pot mixture of YAG and red QDs. The pcWLEDs made by silicone encapsulant with YAG phosphor and red QD at the ratio of YAG.QD = 5.0:0.5wt% exhibited that both efficiency and color rendering index could be increased at same time by adopting YAG phosphor and QD encapsulation in a layer-by-layer structure on top of InGaN LED chip.
机译:从提高荧光粉转换白光LED的效率和显色指数(CRI)的角度出发,研究了在有机硅树脂中包封包含YAG荧光粉和红色量子点(QD)的糊剂的制备方法以及荧光粉层的结构。 pcWLED)。除了YAG荧光粉之外,添加红色荧光粉或红色QD可以增加pcWLED的CRI,但效率降低。事先用红色QD与一部分有机硅树脂混合,再与YAG荧光粉再次混合的密封剂包装的pcWLED,与在YAG荧光粉和一锅混合的YAG荧光粉混合物中包装的pcWLED相比,剩余的硅酮树脂具有更高的CRI和效率。红色QD。由YAG荧光粉和红色QD以YAG.QD = 5.0:0.5wt%的比例封装的有机硅封装的pcWLED显示出,通过在层中采用YAG荧光粉和QD封装,可以同时提高效率和显色指数。 InGaN LED芯片顶部的层结构。

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