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首页> 外文期刊>ACS nano >Highly efficient quantum-dot light-emitting diodes with DNA-CTMA as a combined hole-transporting and electron-blocking layer
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Highly efficient quantum-dot light-emitting diodes with DNA-CTMA as a combined hole-transporting and electron-blocking layer

机译:具有DNA-CTMA的高效量子点发光二极管作为结合的空穴传输和电子阻挡层

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摘要

Owing to their narrow bright emission band, broad size-tunable emission wavelength, superior photostability, and excellent flexible-substrate compatibility, light-emitting diodes based on quantum dots (QDLEDs) are currently under intensive research and development for multiple consumer applications including flatpanel displays and flat lighting. However, their commercialization is still precluded by the slow development to date of efficient QD-LEDs as even the highest reported efficiency of 2.0% cannot favorably compete with their organic counterparts. Here, we report QD-LEDs with a record high efficiency (?4%), high brightness (?6580 cd/ m2), low turn-on voltage (?2.6 V), and significantly improved color purity by simply using deoxyribonucleic acid (DNA) complexed with cetyltrimetylammonium (CTMA) (DNA-CTMA) as a combined hole transporting and electron-blocking layer (HTL/EBL). This, together with controlled thermal decomposition of ligand molecules from the QD shell, represents a novel combined, but simple and very effective, approach toward the development of highly efficient QD-LEDs with a high color purity.
机译:由于其窄的明亮发射带,宽的尺寸可调发射波长,出色的光稳定性和出色的柔性基板兼容性,基于量子点(QDLED)的发光二极管目前正在广泛研究和开发,以用于包括平板显示器在内的多种消费应用和平面照明。但是,迄今为止,由于高效QD-LED的发展缓慢,其商业化仍然受到阻碍,因为即使报道的最高效率为2.0%,也无法与有机QD-LED竞争。在这里,我们报告的QD-LED效率达到了创纪录的高效率(?4%),高亮度(?6580 cd / m2),低开启电压(?2.6 V),并且仅使用脱氧核糖核酸就可以显着提高色纯度( DNA)与十六烷基三甲铵(CTMA)(DNA-CTMA)配合形成复合的空穴传输和电子阻挡层(HTL / EBL)。这与来自QD壳的配体分子的受控热分解一起代表了一种新颖的组合方法,但简单且非常有效,可用于开发具有高色纯度的高效QD-LED。

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