具有优异耐热淬性和超低色移的亮白色 Y2Zr2O7:Tm3+/Dy3+ 纳米管

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
CrystEngComm Pub Date : 2025-03-21 DOI:10.1039/D5CE00133A
Shanshan Cong, Hongquan Yu, Zhichao Ren, Jiashi Sun, Xiangping Li, Sai Xu and Baojiu Chen
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引用次数: 0

摘要

白光led是一种受到广泛关注的环保光源。紫外芯片与三色荧光粉的组合是获得白光LED器件的主要方法。主要问题包括发光强度和寿命的降低,LED器件输出功率的降低,以及在高温环境下由于高工作电流和长工作时间导致荧光粉的色移。本文采用静电纺丝技术在1300℃下制备了具有高热稳定性和超低色漂的明亮单相全光谱白色Tm3+和Dy3+ Y2Zr2O7 (YZO)纳米管。YZO:2%Tm3+/2%Dy3+纳米管的色坐标(0.3308,0.332)与标准白光的色坐标(0.33,0.33)非常接近。研究了YZO:Tm3+/Dy3+纳米管的发光性能,并与1300℃固相反应制备的YZO:Tm3+/Dy3+粉末的发光性能进行了比较。在高温下,YZO:Tm3+/Dy3+纳米管由于其独特的管状结构,表现出比YZO:Tm3+/Dy3+粉末更好的耐热淬火性能。YZO:2%Tm/1%Dy纳米管在453 K时的发射强度比在303 K时保持了91.23%,而YZO:2%Tm/1%Dy纳米管在453 K时的发射强度比室温时保持了90.42%。YZO:2%Tm/1%Dy纳米管在453 K时的色漂为0.16%,而YZO:2%Tm/1%Dy纳米管在相同温度下的色漂为0.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bright electrospun white Y2Zr2O7:Tm3+/Dy3+ nanotubes with excellent thermal quenching resistance and ultralow color shift†

White LEDs are environmentally friendly light sources that have received extensive attention. The combination of an ultraviolet chip and three-color phosphors is the main method used to obtain white LED devices. The primary issues include the decrease in the luminescence intensity and lifetime, the reduction in the output power of the LED device, and the color shift of the phosphor in high-temperature environments caused by high operating currents and prolonged working times. In this work, bright single-phase full-spectrum white Tm3+ and Dy3+ Y2Zr2O7 (YZO) nanotubes with high thermal stability and ultralow color drift were prepared by an electrospinning technique at 1300 °C. The color coordinates (0.3308, 0.332) of YZO:2%Tm3+/2%Dy3+ nanotubes are very close to those of standard white light (0.33, 0.33). The luminescence properties of YZO:Tm3+/Dy3+ nanotubes were investigated and compared with those of YZO:Tm3+/Dy3+ powders prepared via a solid-state reaction at 1300 °C. At high temperatures, YZO:Tm3+/Dy3+ nanotubes exhibit better thermal quenching resistance than YZO:Tm3+/Dy3+ powders do because of their unique tubular structure. YZO:2%Tm/1%Dy nanotubes retains 91.23% of their initial emission intensity at 453 K compared to that at 303 K, whereas the emission intensity of YZO:2%Tm/1%Dy powders remains at 90.42% at 453 K compared to that at room temperature. YZO:2%Tm/1%Dy nanotubes have an ultralow color drift of 0.16% at 453 K, whereas that of YZO:2%Tm/1%Dy powders reaches 0.9% at the same temperature.

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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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