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Dimension control of in situ fabricated CsPbClBr2 nanocrystal films toward efficient blue light-emitting diodes

机译:原位的尺寸控制制造CSPBCLBR2纳米晶膜的高效蓝色发光二极管

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In the field of perovskite light-emitting diodes (PeLEDs), the performance of blue emissive electroluminescence devices lags behind the other counterparts due to the lack of fabrication methodology. Herein, we demonstrate the in situ fabrication of CsPbClBr 2 nanocrystal films by using mixed ligands of 2-phenylethanamine bromide (PEABr) and 3,3-diphenylpropylamine bromide (DPPABr). PEABr dominates the formation of quasi-two-dimensional perovskites with small- n domains, while DPPABr induces the formation of large- n domains. Strong blue emission at 470 nm with a photoluminescence quantum yield up to 60% was obtained by mixing the two ligands due to the formation of a narrower quantum-well width distribution. Based on such films, efficient blue PeLEDs with a maximum external quantum efficiency of 8.8% were achieved at 473 nm. Furthermore, we illustrate that the use of dual-ligand with respective tendency of forming small- n and large- n domains is a versatile strategy to achieve narrow quantum-well width distribution for photoluminescence enhancement.
机译:在Perovskite发光二极管(PELED)的领域中,由于缺乏制造方法,蓝色发光电致发光器件的性能滞后于其他对应物。在此,我们通过使用2-苯基乙胺溴(PEABR)和3,3-二苯基丙胺溴(DPPABR)的混合配体来证明CSPBCLBR 2纳米晶体膜的原位制造。 PEABR主导使用小型域的准二维蠕动,而DPPabr突出了大型域的形成。通过混合两种配体由于形成较窄的量子孔宽度分布,通过混合两种配体而产生高达60%的光致发光量子产率的强烈的蓝色发射。基于此类薄膜,在473nm处实现了最大外部量子效率为8.8%的有效的蓝皮。此外,我们说明使用具有相应形成小和大域和大域的双配体是一种多功能策略,以实现光致发光增强的窄量子阱宽度分布。

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