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Boosting Efficiency and Curtailing the Efficiency Roll-Off in Green Perovskite Light-Emitting Diodes via Incorporating Ytterbium as Cathode Interface Layer

机译:通过将YTTerbium作为阴极接口层,促进效率并在绿色钙钛矿发光二极管中缩短效率滚动

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Perovskite light-emitting diodes (PeLEDs) exhibit high external quantum efficiencies (EQEs), emerging as a nextgeneration lighting and display technology. Nevertheless, they suffer from severe efficiency roll-off at high luminance, particularly in the case of blue and green emissions, which is one of the major bottlenecks in their industrial applications. Here, we attack this problem using a rare-earth metal, Yb, as cathode interface layer (CIL) for green PeLEDs. By adopting a new device configuration of ITO/TFB/FA-based quasi-2D perovskite/TPBi/Yb/Ag, we achieved a peak current efficiency (CE) of 22.3 cd/A with a corresponding EQE of 5.28% and a high maximum luminance of 19 160 cd/m(2). Importantly, the maximum CE of 22.0 cd/A at 2000 cd/m(2) slightly decreased to 16.8 cd/A at 5000 cd/m(2) and maintained a still-decent value of 12.0 cd/A at a high luminance of 10 000 cd/m(2), exhibiting a remarkably low efficiency roll-off. Our Yb-incorporated devices significantly outperformed the PeLEDs containing conventional CILs, including Mg and Liq, in terms of peak efficiency, efficiency roll-off, and operational lifetime. We attribute this encouraging performance to barrier-free, efficient electron injection enabled by the low work function of Yb (2.6 eV), which led to a high electron current, nearly approaching the hole current in hole-dominant PeLEDs, as confirmed by the singlecarrier device measurements. In addition, we also present Yb-incorporated PeLEDs containing Cs-based quasi-2D perovskite as the emissive layer, which displayed an impressive CE of 51.3 cd/A with a corresponding EQE of 16.4% and a maximum luminance of 14 240 cd/m(2), and still demonstrated a reduced efficiency roll-off comparing to that of the Liq-based equivalent. These results unveil the inspiring prospects of Yb as an efficient CIL for PeLEDs toward high efficiency with curtailed roll-off.
机译:Perovskite发光二极管(PELEDS)表现出高外部量子效率(EQES),作为下一代照明和显示技术。然而,它们在高亮度下患有严重的效率滚动,特别是在蓝色和绿色排放的情况下,这是其工业应用中的主要瓶颈之一。在这里,我们使用稀土金属Yb攻击这个问题,作为绿色封面的阴极接口层(CIL)。通过采用新的设备配置ITO / TFB / FA基准Perovskite / TPBI / YB / AG,我们实现了22.3cd / a的峰值电流效率(CE),相应的EQE为5.28%和最大值亮度为19 160cd / m(2)。重要的是,2000℃/ m(2)的22.0cd / A的最大CE略微降低至5000cd / m(2)的16.8cd / a,并在高亮度下保持静止体积为12.0cd / a的值10 000cd / m(2),表现出显着的低效率滚动。我们的YB掺入器件在峰值效率,效率滚降和操作寿命方面,含有常规CIL的含有常规CIL的植物(包括MG和LIQ)显着优势。我们将这种令人振奋的性能归因于通过YB(2.6eV)的低功函数,使其归功于无障碍,高效的电子注入,这导致了高电子电流,几乎接近孔占顶部封闭的孔电流,如单身载波所确认设备测量。此外,我们还将含有基于CS的Quasi-2d Perovskite的YB掺入的封面作为发光层呈现出令人印象深刻的51.3d / A的Ce,相应的EQE为16.4%,最大亮度为14 240cd / m (2),仍然证明了与基于LIQ的当量相比的降低的效率滚动。这些结果揭示了YB的激励前景,作为高效率的高效效率,延迟滚动的高效。

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