首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly efficient rare-earth-free deep red emitting phosphor La2Li1-ySb1-xO6: xMn4+, yMg2+: application in high-power warm w-LEDs
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Highly efficient rare-earth-free deep red emitting phosphor La2Li1-ySb1-xO6: xMn4+, yMg2+: application in high-power warm w-LEDs

机译:高效稀土深红色发光La2Li1-YSB1-XO6:XMN4 +,YMG2 +:在高功率温暖W-LED中的应用

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Phosphor-in-glass (PiG), which serves as both a luminescent convertor and organic encapsulation material in high-power white light-emitting diodes (w-LEDs), has become a prospective research hotspot owing to its high transparency and thermal stability. However, YAG:Ce3+ PiG-based LED devices still suffer from a lack of a red component. Therefore, the development of red phosphors with excellent quantum efficiency and superior thermal stability is urgent. Herein, a highly efficient La2Li1-ySb1-xO6:xMn(4+),yMg(2+) red phosphor with a broadband emission ranging from 670 to 720 nm was fabricated via a conventional solid-state reaction. By co-doping Mg2+ in La2LiSbO6:Mn4+, the emission intensity was enhanced significantly, which reaches as high as 10 times that of the single-doped La2LiSbO6:Mn4+. It is proposed that the Mg2+ dopant can compensate imbalanced charges for the substitution of Sb5+ by Mn4+ and interrupt adverse energy transfer among the Mn4+ activators. Impressively, a maximum quantum yield of up to 80.3% is achieved and about 80% emission intensity is retained at the temperature of 423 K. Furthermore, the crystal field strength (D-q) and Racah parameters (B and C) together with the nephelauxetic ratio ((1)) were calculated based on the obtained spectroscopic data. By embedding the red-emitting La2LiSbO6:Mn4+,Mg2+ phosphor and yellow-emitting YAG:Ce3+ phosphor into TeO2-based glass, an inorganic PiG composite as a color converter to replace organic silicone was acquired. The excellent optical parameters and tunable chromaticity feature of the fabricated w-LEDs were achieved by adjusting the mass ratio of La2LiSbO6:Mn4+,Mg2+ to YAG:Ce3+ in the PiG plate, where the correlated color temperature changed from cool white (6555 K) to warm (4130 K) and the color rendering index increased from 73.7 to 86.6 under an operating current of 300 mA.
机译:荧光体(猪),它用作高功率白色发光二极管(W-LED)中发光转换器和有机封装材料,由于其高透明度和热稳定性而成为一项前瞻性研究热点。然而,YAG:CE3 +基于猪的LED器件仍然缺乏红色部件。因此,迫切需要开发具有优异量子效率和优异的热稳定性的红磷光体。这里,通过常规固态反应制造具有宽带发射的高效La2Li1-YSB1-XO6:XMN(4 +),YMG(2+)红磷光体,其宽带发射范围为670至720nm。通过在La2LiSbO6:Mn4 +中掺杂Mg2 +,发射强度显着增强,其达到单掺杂La2lisbo6:Mn4 +的10倍。提出,Mg2 +掺杂剂可以通过Mn4 +通过Mn4 +取代Sb5 +的不平衡电荷并在Mn4 +活化剂中中断不良能量转移。令人印象地,实现了高达80.3%的最大量子产率,并且约80%的发射强度在423k的温度下保留。此外,晶体场强(DQ)和Racah参数(B和C)以及肾儿效率((1))基于所获得的光谱数据计算。通过将红光La2LiSbo6:Mn4 +,Mg2 +荧光体和黄色发光YAG嵌入:Ce3 +荧光体进入TEO2基玻璃,获得作为替代有机硅氧烷的颜色转换器的无机猪复合材料。通过调节La2lisbo6:Mn4 +,MN4 +,MN4 +,MN4 +,MN4 +,MN4 +,MN4 +,MN4 +至YAG的质量比来实现制造的W-LED的优异光学参数和可调谐色度特征:CE3 +在猪板中,相关的色温从凉爽的白色(6555 k)变为温暖(4130 k)和显色指数在300 mA的工作电流下从73.7增加到86.6。

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