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Wavelength modulation of ZnO nanowire based organic light-emitting diodes with ultraviolet electroluminescence

机译:基于紫外线电致发光的ZnO纳米线有机发光二极管的波长调制

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Although organic light emitting diodes (OLEDs) can find important applications in display-related fields, it still remains a challenge to fabricate high-efficiency ultraviolet (UV) OLEDs with tunable wavelength. In this work, we demonstrate a facile method to adjust the electroluminescence (EL) peak from an inverted UV-OLED device that has zinc oxide nanowires (ZnO NWs) as an electron injection layer. The organic–inorganic interface between ZnO NWs and the 3-(4-biphenyl)-4-phenyl-5- tert -butylphenyl-1,2,4-triazole (TAZ) emission layer employed in this work allows a reduction of the diffusion length of excitons, which further results in a hampered relaxation process of higher energy states as well as a blue shift of the EL spectrum. As a result, the emission peaks of the UV-OLED can be easily adjusted from 383 nm to 374 nm by tuning both the length of the ZnO NWs and the thickness of the TAZ emission layer. Our work reveals an important correlation between emission peaks and exciton diffusion, and presents a novel approach to fabricate high-performance UV-OLEDs with the capability of facilely modifying the emission wavelength.
机译:虽然有机发光二极管(OLED)可以在显示相关领域找到重要的应用,但它仍然是制造具有可调谐波长的高效紫外线(UV)OLED的挑战。在这项工作中,我们证明了一种容纳方法,用于从具有氧化锌纳米线(ZnO NWS)作为电子注入层的倒的UV-OLED器件调节电致发光(EL)峰值。在该工作中使用的ZnO NWS和3-(4-联苯基)-4-苯基-5-叔丁基苯基-1,2,4-三唑(TAZ)发光层之间的有机无机界面允许降低扩散激子的长度,进一步导致较高能量状态的受阻弛豫过程以及EL光谱的蓝色偏移。结果,通过调节ZnO NWS的长度和TAZ发光层的厚度,可以容易地将UV-OLED的发射峰从383nm至374nm调节。我们的作品揭示了发射峰和激子扩散之间的重要相关性,并提出了一种制造高性能UV-OLED的新方法,其具有易于修改发光波长的能力。

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