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Suppressing Foester Resonance Energy Transfer in Close-Packed Quantum-Dot Thin Film: Toward Efficient Quantum-Dot Light-Emitting Diodes with External Quantum Efficiency over 21.6%

机译:抑制封闭式量子点薄膜中的FOESTER共振能量转移:朝向高效的量子点发光二极管,外部量子效率超过21.6%

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摘要

Colloidal II-VI quantum dots (QDs) exhibit near-unity photoluminescence (PL) quantum yield (QY) when they are dissolved in dilute solution. However, when they are assembled into thin film, the PL QY is decreased significantly due to the presence of nonradiative Forster resonance energy transfer (FRET) among the close-packed QDs. In this work, the FRET is suppressed by developing a binary-QD light emission layer (EML), where blue-QDs are introduced as spacers to spatially separate the red-QDs. Due to the separation of red-QDs, the FRET among red-QDs is effectively suppressed and thus the emission properties of red-QDs are well preserved. As a result, the PL QY of red-QD thin film is enhanced by 1.5 times. When the binary-QD EML is integrated into devices, the resultant QD light-emitting diodes (QLEDs) exhibit a high external quantum efficiency of 21.64%. The work offers a new, simple and effective approach to suppress the FRET and improve the QY of QD thin film, which may open up a new avenue for developing efficient QLEDs with near-unity internal quantum efficiency.
机译:当它们溶解在稀释溶液中时,胶体II-VI量子点(QDS)表现出接近统一的光致发光(PL)量子产率(QY)。然而,当它们被组装成薄膜时,由于近填充QDS中的非相互作用的孔谐振能量转移(FRET),PL Qy显着降低。在该工作中,通过开发二进制QD发光层(EML)来抑制FRET,其中蓝QD被引入作为间隔物,以在空间上分离RED-QD。由于红QD的分离,红QD之间的褶皱被有效地抑制,因此Red-QD的排放特性得到了保存。结果,RED-QD薄膜的PLQY增强了1.5倍。当Binary-QD EML集成到器件中时,所得到的QD发光二极管(QLED)具有21.64%的高外部量子效率。该作品提供了一种新的,简单有效的方法来抑制FRET,提高QD薄膜的QY,这可能开辟了一种新的QLED,具有近乎统一的内部量子效率。

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