材料科学
光致发光
量子产额
钙钛矿(结构)
二胺
二极管
光电子学
发光二极管
化学工程
化学物理
纳米技术
光学
荧光
高分子化学
化学
工程类
物理
作者
Shaukat Khan,Reshna Shrestha,Mengru Jin,Doyun Kim,Kuan-Lin Chen,Ruipeng Li,Yijia Gu,Qing Tu,Namyoung Ahn,Wanyi Nie
标识
DOI:10.1002/adma.202413412
摘要
Abstract Quasi‐2D perovskite made with organic spacers co‐crystallized with inorganic cesium lead bromide inorganics is demonstrated for near unity photoluminescence quantum yield at room temperature. However, light emitting diodes made with quasi‐2D perovskites rapidly degrade which remains a major bottleneck in this field. In this work, It is shown that the bright emission originates from finely tuned multi‐component 2D nano‐crystalline phases that are thermodynamically unstable. The bright emission is extremely sensitive to external stimuli and the emission quickly dims away upon heating. After a detailed analysis of their optical and morphological properties, the degradation is attributed to 2D phase redistribution associated with the dissociation of the organic spacers departing from the inorganic lattice. To circumvent the instability problem, a diamine is investigated spacer that has both sides attached to the inorganic lattice. The diamine spacer incorporated perovskite film shows significantly improved thermal tolerance over maintaining a high photoluminescence quantum yield of over 50%, which will be a more robust material for lighting applications. This study guides designing quasi‐2D perovskites to stabilize the emission properties.
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