School of Mechatronic Engineering and Automation, Shanghai University, 149 Yanchang Road, Shanghai, 200072, P. R. China.
Nanoscale. 2017 Oct 5;9(38):14602-14611. doi: 10.1039/c7nr03920d.
Inverted organic light-emitting diodes (IOLEDs) on plastic substrates have great potential application in flexible active-matrix displays. High energy consumption, instability and poor electron injection are key issues limiting the commercialization of flexible IOLEDs. Here, we have systematically investigated the electrooptical properties of molybdenum disulfide (MoS) and applied it in developing highly efficient and stable blue fluorescent IOLEDs. We have demonstrated that MoS-based IOLEDs can significantly improve electron-injecting capacity. For the MoS-based device on plastic substrates, we have achieved a very high external quantum efficiency of 7.3% at the luminance of 9141 cd m, which is the highest among the flexible blue fluorescent IOLEDs reported. Also, an approximately 1.8-fold improvement in power efficiency was obtained compared to glass-based IOLEDs. We attributed the enhanced performance of flexible IOLEDs to MoS nanopillar arrays due to their light extraction effect. The van der Waals force played an important role in the formation of MoS nanopillar arrays by thermal evaporation. Notably, MoS-based flexible IOLEDs exhibit an intriguing efficiency roll-up, that is, the current efficiency increases slightly from 14.0 to 14.6 cd A with the luminance increasing from 100 to 5000 cd m. In addition, we observed that the initial brightness of 500 cd m can be maintained at 97% after bending for 500 cycles, demonstrating the excellent mechanical stability of flexible IOLEDs. Furthermore, we have successfully fabricated a transparent, flexible IOLED with low efficiency roll-off at high current density.
倒置有机发光二极管(IOLED)在塑料衬底上具有很大的应用潜力,可用于柔性有源矩阵显示器。高能耗、不稳定性和电子注入不良是限制柔性 IOLED 商业化的关键问题。在这里,我们系统地研究了二硫化钼(MoS)的光电性能,并将其应用于开发高效稳定的蓝色荧光 IOLED。我们已经证明,基于 MoS 的 IOLED 可以显著提高电子注入能力。对于基于 MoS 的塑料衬底器件,我们在亮度为 9141 cd/m 时实现了非常高的外量子效率 7.3%,这是已报道的柔性蓝色荧光 IOLED 中的最高值。此外,与玻璃基 IOLED 相比,功率效率提高了约 1.8 倍。我们将柔性 IOLED 性能的提高归因于 MoS 纳米柱阵列的光提取效应。范德华力在热蒸发过程中 MoS 纳米柱阵列的形成中起着重要作用。值得注意的是,基于 MoS 的柔性 IOLED 表现出有趣的效率提升,即电流效率从 14.0 cd/A 略微增加到 14.6 cd/A,而亮度从 100 cd/m 增加到 5000 cd/m。此外,我们观察到,在 500 次弯曲循环后,初始亮度为 500 cd/m 可保持在 97%,这表明柔性 IOLED 的机械稳定性优异。此外,我们还成功地制造了一种透明、柔性的 IOLED,其在高电流密度下具有低效率滚降。