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Highly Efficient, Color-Reproducible Full-Color Electroluminescent Devices Based on Red/Green/Blue Quantum Dot-Mixed Multilayer

机译:基于红色/绿色/蓝色量子点混合多层的高效,可再现颜色的全色电致发光器件

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Over the past few years the performance of colloidal quantum dot-light-emitting diode (QLED) has been progressively improved. However, most of QLED work has been fulfilled in the form of monochromatic device, while full-color-enabling white QLED still remains nearly unexplored. Using red, green, and blue quantum dots (QDs), herein, we fabricate bichromatic and trichromatic QLEDs through sequential solution-processed deposition of poly(9-vinlycarbazole) (PVK) hole transport layer, two or three types of QDs-mixed multilayer, and ZnO nanoparticle electron transport layer. The relative electroluminescent (EL) spectral ratios of constituent QDs in the above multicolored devices are found to inevitably vary with applied bias, leading to the common observation of an increasing contribution of a higher-band gap QD EL over low-band gap one at a higher voltage. The white EL from a trichromatic device is resolved into its primary colors through combining with color filters, producing an exceptional color gamut of 126% relative Committee (NTSC) color space that a state-of-the-art full-color organic LED counterpart cannot attain. Our trichromatic white QLED also displays the record high EL performance such as the peak values of 23 352 cd/m(2) in luminance, 21.8 cd/A in current efficiency, and 10.9% to National Television Systems in external quantum efficiency.
机译:在过去的几年中,胶体量子点发光二极管(QLED)的性能已逐步提高。但是,大多数QLED工作已通过单色设备的形式完成,而启用全色的白色QLED仍几乎未开发。在本文中,我们使用红色,绿色和蓝色量子点(QD),通过依次固溶处理沉积的聚(9-乙烯基咔唑)(PVK)空穴传输层,两种或三种QD混合的多层膜来制造双色和三色QLED ,以及ZnO纳米粒子电子传输层。发现上述多色器件中组成QD的相对电致发光(EL)光谱比不可避免地随施加的偏压而变化,这导致通常观察到,高频带隙QD EL相对于低频带隙Q的贡献越来越大。更高的电压。通过与滤色镜结合使用,将三基色器件中的白色EL分解为原色,从而产生了相对委员会(NTSC)色彩空间为126%的出色色域,这是当今最先进的全色有机LED所无法实现的达到。我们的三色白光QLED还显示了创纪录的高EL性能,例如,峰值亮度为23352 cd / m(2),电流效率为21.8 cd / A,外部量子效率为National Television Systems的10.9%。

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