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Development of large area transparent conducting oxides from a combinatorial lead for organic solid state lighting

机译:来自组合透明电导氧化物的有机固态照明的大面积透明导电氧化物

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Organic light emitting devices (OLEDs) are projected to provide a low-cost, long-lived, and efficient wide area lighting solution if challenges in reliability, cost, and efficiency can be overcome. Development of new transparent conducting oxides (TCOs) that do not contain indium for use as the anode in bottom-emitting OLEDs can lead to cost savings and provide longer device lifetimes. Indium-free TCOs need to meet or exceed performance targets including high conductivity and visible light transmission, acceptable stability and, for blue or white OLEDs, a high work function to match the deep HOMO of the hole transport material. In this work, we report results from our efforts to scale up sputter deposition on large area substrates (up to hundreds of cm~2) of a Ga-doped ZnO TCO having a composition identified using combinatorial methods. We present the results of initial scale-up efforts and evaluate relevant properties for these films. Finally, we have incorporated these materials in the production of OLEDs, and show performance comparisons between devices fabricated on the scaled-up GZO and commercial indium tin oxide (ITO). The results demonstrate that we are able to generate substrates with the appropriate work function to reduce the operating voltage of blue phosphorescent OLEDs compared to commercial ITO. This work function-HOMO energy matching leads to more efficient charge injection into the device hole transport layer.
机译:如果可以克服可靠性,成本和效率的挑战,则投影有机发光器件(OLED)以提供低成本,长的,高效的宽面积照明解决方案。开发不含铟作为底部发射OLED中阳极的氧化铟的新透明导电氧化物(TCOS)可以降低成本节省并提供更长的设备寿命。无铟的TCOS需要满足或超过性能目标,包括高导电性和可见光透射率,可接受的稳定性,以及用于蓝色或白色OLED,这是匹配空穴传输材料的深层的高功函数。在这项工作中,我们报道了从我们的努力以扩大在大面积基板的溅射沉积的结果(多达几百厘米〜2的)的具有使用组合方法鉴定的组合物中的掺Ga的ZnO的TCO。我们介绍了初始扩大努力的结果,并评估了这些电影的相关性质。最后,我们在OLED的生产中纳入了这些材料,并在缩小的GZO和商业铟锡(ITO)上制造的装置之间的性能比较。结果表明,与商业ITO相比,我们能够通过适当的功函数产生具有适当工作功能的基板,以减少蓝磷光OLED的工作电压。该工作功能 - 同性能匹配导致更有效的电荷注入设备孔输送层。

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