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首页> 外文期刊>Advanced Functional Materials >High-Performance Perovskite-Based Blue Light-Emitting Diodes with Operational Stability by Using Organic Ammonium Cations as Passivating Agents
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High-Performance Perovskite-Based Blue Light-Emitting Diodes with Operational Stability by Using Organic Ammonium Cations as Passivating Agents

机译:基于高性能的钙钛矿的蓝色发光二极管,通过使用有机铵阳离子作为钝化剂的操作稳定性

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摘要

Blue emissive perovskites can be prepared by incorporating chlorine into bromine-based perovskites to tune their bandgap. However, mixed-halide perovskites exhibit intrinsic phase instability, particularly under electrical potential, owing to halide migration. To achieve high-performance blue perovskite-based light-emitting diodes (PeLEDs) with operational stability, organic ammonium cations are used for passivating the anionic defects of the CsPbBr2Cl film. Diphenylpropylammonium chloride (DPPACl), used as a passivating agent, successfully prevents the spectral instability of blue PeLEDs by passivating the Cl- vacancies. Consequently, the blue PeLED prepared with this passivating agent delivers excellent device performance with a maximum external quantum efficiency of 3.03%. Moreover, upon tuning the DPPACl concentration, the PeLED emits stably in the deep-blue spectral region (464 nm) with a half-life time of 420 s. Thus, the use of organic ammonium cation as a passivating agent is an effective strategy for developing high-performance blue PeLEDs with operational stability.
机译:通过将氯掺入溴基的Perovskites来调整它们来调整它们的带隙可以制备蓝色发光钙钛矿。然而,由于卤化物迁移,混合卤化卤钙酸盐表现出特性相位不稳定性,特别是在电势下。为了实现具有操作稳定性的高性能蓝钙钛矿的发光二极管(PELEDS),有机铵阳离子用于钝化CSPBBR2Cl膜的阴离子缺陷。用作钝化剂的二苯基丙基氯化铵(DPPACL)成功地防止了通过钝化CL-空位来防止蓝色粘液的光谱不稳定性。因此,用该钝化剂制备的蓝色封皮提供了优异的设备性能,最大外部量子效率为3.03%。此外,在调谐DPPACL浓度时,覆盆子在深蓝色光谱区域(464nm)中稳定地发射,其中半衰期为420秒。因此,使用有机铵阳离子作为钝化剂是用于开发具有操作稳定性的高性能蓝色覆盖物的有效策略。

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