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首页> 外文期刊>Nanoscale >Boosting the efficiency of inverted quantum dot light-emitting diodes by balancing charge densities and suppressing exciton quenching through band alignment
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Boosting the efficiency of inverted quantum dot light-emitting diodes by balancing charge densities and suppressing exciton quenching through band alignment

机译:提高反向量子点的效率发光二极管的平衡密度和抑制激子淬火通过带对齐

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摘要

We report an inverted and multilayer quantum dot light emitting diode (QLED) which boosts high efficiency by tuning the energy band alignment between charge transport and light emitting layers. The electron transport layer (ETL) was ZnO nanoparticles (NPs) with an optimized doping concentration of cesium azide (CsN3) to effectively reduce electron flow and balance charge injection. This is by virtue of a 0.27 eV upshift of the ETL's conduction band edge, which inhibits the quenching of excitons and preserves the superior emissive properties of the quantum dots due to the insulating characteristics of CsN3. The demonstrated QLED exhibits a peak current efficiency, power efficiency and external quantum efficiency of up to 13.5 cd A(-1), 10.6 lm W-1 and 13.4 for the red QLED, and correspondingly 43.1 cd A(-1) 33.6 lm W-1 and 9.1 for green, and 4.1 cd A(-1), 2.0 lm W-1 and 6.6 for the blue counterparts. Compared with QLEDs without optimization, the performance of these modified devices shows drastic improvement by 95.6, 39.4 and 36.7, respectively. This novel device architecture with heterogeneous energy levels reported here offers a new design strategy for next-generation high efficiency QLED displays and solid-state lighting technologies.
机译:我们报告一个倒和多层量子点发光二极管(ql),增加高通过调优能带对齐效率之间的电荷传输和发光层。以优化掺杂氧化锌纳米颗粒(NPs)叠氮化铯的浓度(CsN3)有效降低电子流动和平衡电荷注入。加速的ETL的导带边抑制激子的淬火和保存上级发射量子的属性点的绝缘特性CsN3。电流效率、功率效率和外部量子效率高达13.5 cd (1), 10.6lm w1和13.4%的红ql,相应的43.1 (1)33.6 lm w1和cd9.1%为绿色,4.1 cd (1), 2.0 lm w1和6.6%的蓝色。QLEDs没有优化的性能这些修改设备显示大幅改善分别为95.6%、39.4%和36.7%。新设备与异构体系结构能级报道在这里提供了一个新的设计新一代高效ql的策略显示器和固态照明技术。

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