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Materials and Device Structures for High Performance Poly OLEDs on Flexible Plastic Substrates

机译:用于柔性塑料基材的高性能聚OLED材料和装置结构

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Organic polymer light-emitting devices (Poly OLEDs) with the bi-layer thin film structures have been fabricated on both glass and flexible plastic substrates. The structural, optical, and electrical properties of each organic polymer layer have been optimized for the Poly OLED optimum electrical performances. The spin coating technique was used to fabricate our devices. An alternating co-polymer of poly (9,9'-dihexyl fluorene-2, 7-diyl) and poly (benzothiadiazole 2, 5-diyl) (PHF-BTD), and poly (9-hexyl carbazole-3, 6-diyl) (PC6) have been used as light emitting and hole transporting polymer, respectively. The combination of the optical and cyclic voltammetry (CV) analysis has been used to develop the band diagram for our Poly OLEDs. For our plymers, the oxidation / reduction processes are well defined and clearly observed in the CV spectra. This allows a direct comparison of the polymers band gaps determined by both the optical and electrical methods. The photoluminesncence and electroluminesncece emission peaks are both located around 570 nm, and maximum brightness up to 2000 cd/m~2 was obtained. Turn-on voltages of approx 16 and approx 20 V, acceptable emission efficiencies of approx 5.5 and approx 4.2 cd/A, good power efficiencies of approx 0.9 and 0.6 lm/W, and acceptable external quantum efficiencies of 1.8 and 1.6
机译:在两个玻璃和柔性塑料基材上制造了具有双层薄膜结构的有机聚合物发光器件(聚OLED)。已经针对聚OLED最佳电气性能进行了优化了每个有机聚合物层的结构,光学和电性能。旋涂技术用于制造我们的装置。聚(9,9'-二己二烯-2,7-二基)和聚(苯并噻唑2,5-二基)(PHF-BTD)和聚(9-己基咔唑-3,6-)的交替的共聚物。二基)(PC6)分别用作发光和空穴传输聚合物。已经使用光学和循环伏安法(CV)分析的组合来开发用于我们聚OLED的带图。对于我们的粉利,氧化/还原过程在CV光谱中明确且清楚地观察到。这允许通过光学和电气方法确定聚合物带间隙的直接比较。光致荷敏和电荷丝的发射峰位于570nm左右,获得最大亮度至2000cd / m〜2。接通电压约为16和约20 V,可接受的排放效率约为5.5和约4.2 CD / A,良好的功率效率为0.9和0.6升/倍,可接受的外部量子效率为1.8和1.6

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