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首页> 外文期刊>Journal of nanoscience and nanotechnology >White Light Emission and Luminescence Dynamics in Eu3+/Dy3+ Codoped ZnO Nanocrystals
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White Light Emission and Luminescence Dynamics in Eu3+/Dy3+ Codoped ZnO Nanocrystals

机译:Eu3 + / Dy3 +共掺杂ZnO纳米晶体的白光发射和发光动力学

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In order to expand the use of ZnO in advanced display and lighting device applications, such as distinguishable emissive flat panel displays and liquid crystal display backlights, Eu3+/Dy3+-codoped ZnO nanocrystals were synthesized using a low temperature wet chemical doping technique and chemical surface modification. X-ray diffraction patterns revealed that co-doping Eu3+ and Dy3+ does not change the wurtzite structure of ZnO. A high-resolution TEM image showing obvious lattice fringes confirmed the high crystallinity of the nanosized sample. The luminescence and dynamics of Eu3+/Dy3+-codoped ZnO nanocrystals of various doping concentrations were studied under ultraviolet excitation. Excitation into the ZnO conduction band was also studied. ZnO doped with Eu3+ and Dy3+ ions exhibited a strong blue (483 nm) emission from the F-4(9/2) -> H-6(15/2) transition of Dy3+ ions, a yellowish-green (575 nm) emission from the F-4(9/2) -> H-6(13/2) transition of Dy3+ ions and a red (612 nm) emission from the D-5(0) -> F-7(2) transition of Eu3+ ions, without a defect background. Undoped ZnO emitted a broadband green light, demonstrating an efficient energy transfer from the ZnO host to the Eu3+ and Dy3+ ions. Moreover, energy transfer from the Eu3+ ions to the Dy3+ ions in the ZnO host was also observed by analyzing luminescence decay curves. The luminescence dynamics of the Eu3+/Dy3+-codped ZnO sample indicate that as the Eu3+ concentration increased, both the rise and the decay time constants of the H-4(9/2) level of the Dy3+ ions became longer, while the decay time constants of the 5D0 level of the Eu3+ ions became shorter, suggesting an energy transfer from the Eu3+ ions to the Dy3+ ions in the ZnO host. Furthermore, by adjusting the doping concentration ratio of Eu3+ and Dy3+ ions, the Eu3+/Dy3+-codoped ZnO phosphors emitted strong white luminescence with a high color purity and high color rendering index. The results indicate that the Eu3+/Dy3+-codoped ZnO phosphors are promising light-conversion materials, and have the potential to be used in field emission display devices and LCD backlights.
机译:为了在高级显示器和照明设备应用(例如可分辨的发光平板显示器和液晶显示器背光灯)中扩展ZnO的使用,使用低温湿化学掺杂技术和化学表面改性合成了Eu3 + / Dy3 +掺杂的ZnO纳米晶体。 。 X射线衍射图谱表明,共掺杂Eu3 +和Dy3 +不会改变ZnO的纤锌矿结构。高分辨率TEM图像显示出明显的晶格条纹,证实了纳米尺寸样品的高结晶度。在紫外激发下研究了不同掺杂浓度的Eu3 + / Dy3 +共掺杂ZnO纳米晶体的发光和动力学。还研究了激发进入ZnO导带的方法。掺杂Eu3 +和Dy3 +离子的ZnO从Dy3 +离子的F-4(9/2)-> H-6(15/2)跃迁显示出强蓝色(483 nm)发射,呈黄绿色(575 nm)发射从Dy-4 +离子的F-4(9/2)-> H-6(13/2)跃迁中获得,并且从D-5(0)-> F-7(2)跃迁中获得红色(612 nm)发射Eu3 +离子,无缺陷背景。未掺杂的ZnO发出宽带绿光,表明从ZnO主体到Eu3 +和Dy3 +离子的有效能量转移。此外,还通过分析发光衰减曲线观察到了ZnO主体中从Eu3 +离子到Dy3 +离子的能量转移。 Eu3 + / Dy3 +掺杂的ZnO样品的发光动力学表明,随着Eu3 +浓度的增加,Dy3 +离子的H-4(9/2)能级的上升和衰减时间常数变长,而衰减时间变长Eu3 +离子的5D0能级的常数变短,表明ZnO主体中从Eu3 +离子到Dy3 +离子的能量转移。此外,通过调节Eu3 +和Dy3 +离子的掺杂浓度比,Eu3 + / Dy3 +掺杂的ZnO磷光体发出具有高色纯度和高显色指数的强白色发光。结果表明,掺有Eu3 + / Dy3 +的ZnO磷光体是很有前途的光转换材料,具有在场发射显示设备和LCD背光源中使用的潜力。

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