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Ce3+ and Eu3+ emissions in YAG via a core-shell strategy for warm white LED lighting

机译:CE3 +和EU3 +通过核心壳体策略进行核心壳策略,用于温暖的白色LED照明

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摘要

YAG:Ce and YAG:Eu sols were synthesized by a polymeric sol-gel route. The crystallization temperature of YAG was determined by X-ray diffraction as a function of the calcination temperature, revealing that YAG starts to crystallize directly from the amorphous phase at 800 A degrees C. The effects of the thermal treatment and the dopant amount on the photoluminescent properties were studied, observing the highest emission after calcination at 1000 A degrees C for 1 h in both cases and with a concentration of 1 and 3 mol% of Ce and Eu, respectively. Core-shell materials were prepared by dipping YAG:Ce or YAG:Eu sintered pellets into the synthesized sols and then, these materials were calcined at 1000 A degrees C for 1 h. An effective energy transfer from Ce to Eu was observed in the sample YAG:Eu (core)-YAG:Ce (shell) when blue light (lambda = 465 nm) is used as excitation source. This wavelength excites the Ce but not the Eu; however, in the photoluminescence emission spectrum, the bands associated to both ions can be clearly detected, confirming that the core-shell strategy is a good method for the preparation of warmer white LEDs.
机译:YAG:Ce和YAG:Eu溶胶由聚合物溶胶 - 凝胶途径合成。 YAG的结晶温度通过X射线衍射作为煅烧温度的函数来确定,显示YAG开始直接从800℃下直接从非晶相结晶。热处理和掺杂剂量对光致发光的影响研究了性质,在两种情况下在1000℃下煅烧1小时,分别观察到煅烧的最高排放,分别为1和3摩尔%的CE和EU。通过将YAG制备核 - 壳材料:Ce或YAG:Eu烧结颗粒进入合成溶胶,然后将这些材料以1000℃煅烧1小时。在样品yag中观察到从Ce到欧盟的有效能量转移:欧盟(核心)-Aag:Ce(壳)使用蓝光(Lambda = 465nm)作为激发源时。这种波长激发CE但不是欧盟;然而,在光致发光发射光谱中,可以清楚地检测与两个离子相关的条带,确认核心壳策略是制备暖白光LED的良好方法。

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