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High color rendering index WLED based on YAG:Ce phosphor and CdS/ZnS core/shell quantum dots

机译:基于YAG:Ce荧光粉和CdS / ZnS核/壳量子点的高显色指数WLED

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White LED combining of blue chip and YAG:Ce phosphor suffers from a red spectral deficiency, resulting in a relatively low value of color rendering index (CRI). In our study, for an effort to improve color rendering properties of YAG:Ce phosphor-based white LEDs, highly luminescent red-orange emitting CdS/ZnS QDs were blended with YAG:Ce phosphors. Core/shell CdS/ZnS quantum dots with the emission wavelength of 618nm, was synthesized by thermal deposition using cadmium oxide and selenium as precursors in a hot lauric acid and hexadecylamine trioctylphosphine oxide hybrid. YAG:Ce phosphor was synthesized by high-temperature solid state reaction at 900-1200°C in a slightly reducing atmosphere for 4 hours. Blends of phosphors and QDs exhibited the prominent spectral evolution with an increasing content of QDs. A hybrid white LED, which combines a blue LED with the blend of YAG phosphor and QDs with a weight ratio of 1.5:1,was demonstrated with an improved CRI value of 86.
机译:蓝芯片和YAG:Ce磷光体组合而成的白光LED缺少红色光谱,导致显色指数(CRI)值相对较低。在我们的研究中,为了努力改善基于YAG:Ce荧光粉的白色LED的显色性能,将高发光红橙色发射的CdS / ZnS QD与YAG:Ce荧光粉混合。通过在热月桂酸和十六烷基胺三辛基氧化膦杂化物中以氧化镉和硒为前体进行热沉积,合成了发射波长为618nm的核/壳CdS / ZnS量子点。 YAG:Ce荧光粉是通过在略有还原的气氛中于900-1200°C高温固相反应4小时合成的。磷光体和QD的混合物显示出显着的光谱演变,QD含量不断增加。混合白光LED结合了蓝色LED和重量比为1.5:1的YAG荧光粉和QD的混合物,其CRI值提高了86。

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