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Quantum Dot/Light-Emitting Electrochemical Cell Hybrid Device and Mechanism of Its Operation

机译:量子点/发光电化学电池混合装置及其工作机理

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A new type of light-emitting hybrid device based on colloidal quantum dots (QDs) and an ionic transition metal complex (iTMC) light-emitting electrochemical cell (LEC) is introduced. The developed hybrid devices show light emission from both active layers, which are combined in a stacked geometry. Time-resolved photoluminescence experiments indicate that the emission is controlled by direct charge injection into both the iTMC and the QD layer. The turn-on time (time to reach 1 cd/m(2)) at constant voltage operation is significantly reduced from 8 min in the case of the reference LEC down to subsecond in the case of the hybrid device. Furthermore, luminance and efficiency of the hybrid device are enhanced compared to reference LEC directly after device turn-on by a factor of 400 and 650, respectively. We attribute these improvements to an increased electron injection efficiency into the iTMC directly after device turn-on.
机译:介绍了一种基于胶体量子点(QDs)和离子过渡金属配合物(iTMC)发光电化学电池(LEC)的新型发光混合器件。已开发的混合器件显示了两个有源层的发光,这两个有源层以堆叠的几何形状组合在一起。时间分辨的光致发光实验表明,发射是通过直接注入iTMC和QD层来控制的。恒定电压工作的开启时间(达到1 cd / m(2)的时间)从参考LEC的8分钟显着减少到混合动力设备的亚秒。此外,与直接打开设备后的参考LEC相比,混合设备的亮度和效率分别提高了400倍和650倍。我们将这些改进归因于设备开启后直接将电子注入效率提高到iTMC。

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