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All Solution-processed Stable White Quantum Dot Light-emitting Diodes with Hybrid ZnO@TiO2 as Blue Emitters

机译:ZnO @ TiO 2 杂化为蓝光的所有溶液处理的稳定白色量子点发光二极管

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White quantum dot light-emitting diodes (QD-LEDs) have been a promising candidate for high-efficiency and color-saturated displays. However, it is challenging to integrate various QD emitters into one device and also to obtain efficient blue QDs. Here, we report a simply solution-processed white QD-LED using a hybrid ZnO@TiO2 as electron injection layer and ZnCdSeS QD emitters. The white emission is obtained by integrating the yellow emission from QD emitters and the blue emission generated from hybrid ZnO@TiO2 layer. We show that the performance of white QD-LEDs can be adjusted by controlling the driving force for hole transport and electroluminescence recombination region via varying the thickness of hole transport layer. The device is demonstrated with a maximum luminance of 730?cd/m2 and power efficiency of 1.7?lm/W, exhibiting the Commission Internationale de l’Enclairage (CIE) coordinates of (0.33, 0.33). The unencapsulated white QD-LED has a long lifetime of 96?h at its initial luminance of 730?cd/m2, primarily due to the fact that the device with hybrid ZnO@TiO2 has low leakage current and is insensitive to the oxygen and the moisture. These results indicate that hybrid ZnO@TiO2 provides an alternate and effective approach to achieve high-performance white QD-LEDs and also other optoelectronic devices.
机译:白色量子点发光二极管(QD-LED)已成为高效且色彩饱和的显示器的有希望的候选者。但是,将各种QD发射器集成到一个设备中并获得有效的蓝色QD也是一个挑战。在这里,我们报告了一个简单的溶液处理白色QD-LED,它使用混合ZnO @ TiO 2 作为电子注入层和ZnCdSeS QD发射极。通过将QD发射器的黄色发射和混合ZnO @ TiO 2 层产生的蓝色发射进行积分,可以获得白色发射。我们表明,通过改变空穴传输层的厚度来控制空穴传输和电致发光复合区域的驱动力,可以调节白色QD-LED的性能。该设备的最大亮度为730?cd / m 2 ,功率效率为1.7?lm / W,其国际照明委员会(CIE)坐标为(0.33,0.33) 。未封装的白色QD-LED在其初始亮度730?cd / m 2 时具有96?h的长寿命,这主要是由于具有ZnO @ TiO 2杂化的器件具有低泄漏电流,并且对氧气和水分不敏感。这些结果表明,杂化ZnO @ TiO 2 提供了一种替代的有效方法来实现高性能的白色QD-LED和其他光电器件。

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