电致发光
材料科学
钙钛矿(结构)
纳米晶
薄膜
卤化物
纳米技术
光电子学
结晶
化学工程
化学
无机化学
图层(电子)
工程类
作者
Tanghao Liu,Zhipeng Zhang,Qi Wei,Bingzhe Wang,Kaiyang Wang,Jia Guo,Chao Liang,Dandan Zhao,Shi Chen,Yuxin Tang,Yuanyuan Zhou,Guichuan Xing
标识
DOI:10.1016/j.cej.2021.128511
摘要
Quasi-2D halide perovskites have recently emerged as a promising family of semiconducting materials for light-emitting applications. However, these materials usually consist of mixed 2D-3D perovskite phases with rarely controlled distributions when processed into thin films. Such film structures can be detrimental to carrier transport and transfer, limiting the electroluminescent properties and light-emitting device performance. In this work, we tailor the solution crystallization of quasi-2D perovskites with a nanocrystals-mediation strategy, which leads to high-quality, low-defect-density quasi-2D perovskite films with uniformly mixed 2D-3D perovskite phases. Mechanistic insights gained from ultrafast spectroscopic studies reveal a highly enhanced carrier funnelling process in such nanocrystals-mediated films, which results in a threefold increase in the electroluminescence efficiency compared with the pristine thin pristine films. This work demonstrates the promise of a potentially versatile approach in using nanocrystals to manipulate the functional properties of quasi-2D perovskite thin films.
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