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Efficient white phosphorescent organic light-emitting diodes using ultrathin emissive layers (1 nm)

机译:使用超薄发光层(1 nm)的高效白色磷光有机发光二极管

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摘要

In this paper, efficient phosphorescent white organic light-emitting diodes (WOLEDs) were fabricated based on ultrathin doping-free emissive layers and mixed bipolar interlayers. The energy transfer processes were proved via the research of WOLEDs with different interlayer thicknesses and transient photoluminescence lifetime. WOLEDs with optimized thickness of doping-free emissive layers show maximum current efficiency of 47.8 cd/A and 44.9 cd/A for three-colors and four-colors WOLEDs, respectively. The Commission Internationale de L’Eclairage coordinates shows a very slight variation of ( ± 0.02, ± 0.02) from 5793 cd/m2 to 11370 cd/m2 for three-colors WOLEDs and from 3038 cd/m2 to 13720 cd/m2 for four-colors WOLEDs, respectively. The stability of the spectra is attributed to the stable and sequential energy transfer among the various dyes. The color temperature of four-colors WOLEDs can be obtained from 2659 to 6636 by adjusting the thickness of ultrathin emissive layer.
机译:在本文中,基于超薄无掺杂发射层和混合双极中间层,制造了有效的磷光白色有机发光二极管(WOLED)。通过对不同层间厚度和瞬态光致发光寿命的WOLED的研究证明了能量转移过程。具有优化的无掺杂发射层厚度的WOLED分别对三色和四色WOLED表现出最大电流效率分别为47.8µcd / A和44.9µcd / A。国际照明委员会的坐标显示,三点之间的(±0.02,±0.02)从5793 cd / m 2 到11370 cd / m 2 很小,彩色WOLED,四色WOLED分别从3038 cd / m 2 到13720 cd / m 2 。光谱的稳定性归因于各种染料之间稳定且连续的能量转移。通过调整超薄发光层的厚度,可以从2659至6636获得四色WOLED的色温。

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