钙钛矿(结构)
材料科学
微晶
光电子学
发光二极管
二极管
结晶学
冶金
化学
作者
Himchan Cho,Joo Sung Kim,Christoph Wolf,Younghoon Kim,Hyung Joong Yun,Su-Hun Jeong,Aditya Sadhanala,Vijay Venugopalan,Jin Woo Choi,Chang‐Lyoul Lee,Richard H. Friend,Tae‐Woo Lee
出处
期刊:ACS Nano
[American Chemical Society]
日期:2018-03-01
卷期号:12 (3): 2883-2892
被引量:127
标识
DOI:10.1021/acsnano.8b00409
摘要
We have achieved high-efficiency polycrystalline perovskite light-emitting diodes (PeLEDs) based on formamidinium (FA) and cesium (Cs) mixed cations without quantum dot synthesis. Uniform single-phase FA1- xCs xPbBr3 polycrystalline films were fabricated by one-step formation with various FA:Cs molar proportions; then the influences of chemical composition on film morphology, crystal structure, photoluminescence (PL), and electroluminescence (EL) were systematically investigated. Incorporation of Cs+ cations in FAPbBr3 significantly reduced the average grain size (to 199 nm for FA:Cs = 90:10) and trap density; these changes consequently increased PL quantum efficiency (PLQE) and PL lifetime of FA1- xCs xPbBr3 films and current efficiency (CE) of PeLEDs. Further increase in Cs molar proportion from 10 mol % decreased crystallinity and purity, increased trap density, and correspondingly decreased PLQE, PL lifetime, and CE. Incorporation of Cs also increased photostability of FA1- xCs xPbBr3 films, possibly due to suppressed formation of light-induced metastable states. FA1- xCs xPbBr3 PeLEDs show the maximum CE = 14.5 cd A-1 at FA:Cs = 90:10 with very narrow EL spectral width (21-24 nm); this is the highest CE among FA-Cs-based PeLEDs reported to date. This work provides an understanding of the influences of Cs incorporation on the chemical, structural, and luminescent properties of FAPbBr3 polycrystalline films and a breakthrough to increase the efficiency of FA1- xCs xPbBr3 PeLEDs.
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