钙钛矿(结构)
卤化物
光致发光
材料科学
结晶
相(物质)
放大自发辐射
光电子学
聚集诱导发射
自发辐射
工作(物理)
受激发射
化学工程
化学稳定性
理论(学习稳定性)
薄膜
铵
溶解过程
电介质
发光
量子点
光化学
过程(计算)
发射光谱
作者
Mengtong Yan,Zuyang Yin,Junxi Zhang,Mei Lyu,Jun Zhu
摘要
Dion–Jacobson (DJ) phase halide perovskites have garnered significant attention in photoluminescence applications due to their excellent stability compared to three‐dimensional (3D) perovskites. However, in solution‐processed DJ‐phase perovskite films, the complex crystallization process and the formation of multi‐dispersed quantum well structures significantly impact the optoelectronic properties of the DJ‐phase perovskite. This work presents a quasi‐two‐dimensional (quasi‐2D) mixed‐phase perovskite (MPP) film by introducing Ruddlesden–Popper (RP)‐type aromatic ammonium cations into the DJ‐phase precursor. The resulting MPP 0.2 film, with the chemical formula (PEA 2 ) 0.2 HDA 0.8 FA 7 Pb 8 Br 25 (where HDA = hexamethylenediammonium and PEA = phenylethylammonium), exhibits improved morphology, a more uniform distribution of n phase components, higher crystallinity, and enhanced hydrophobicity compared to the neat DJ‐phase films. Notably, the amplified spontaneous emission (ASE) threshold of the quasi‐2D MPP 0.2 film decreased from 120 to 60 μJ/cm 2 . This research shows that quasi‐2D MPP films have great potential as waveguide materials for stable, low‐threshold ASE.
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