量子产额
化学
钝化
油胺
钙钛矿(结构)
光致发光
发光二极管
纳米晶
光电子学
齿合度
量子效率
二极管
配体(生物化学)
产量(工程)
材料科学
卤化物
纳米技术
结晶学
无机化学
图层(电子)
荧光
光学
晶体结构
有机化学
受体
物理
冶金
生物化学
作者
Jun Pan,Yuequn Shang,Jun Yin,Michele De Bastiani,Wei Peng,İbrahim Dursun,Lutfan Sinatra,Ahmed M. El‐Zohry,Mohamed Nejib Hedhili,Abdul‐Hamid Emwas,Omar F. Mohammed,Zhijun Ning,Osman M. Bakr
摘要
Although halide perovskite nanocrystals (NCs) are promising materials for optoelectronic devices, they suffer severely from chemical and phase instabilities. Moreover, the common capping ligands like oleic acid and oleylamine that encapsulate the NCs will form an insulating layer, precluding their utility in optoelectronic devices. To overcome these limitations, we develop a postsynthesis passivation process for CsPbI3 NCs by using a bidentate ligand, namely 2,2'-iminodibenzoic acid. Our passivated NCs exhibit narrow red photoluminescence with exceptional quantum yield (close to unity) and substantially improved stability. The passivated NCs enabled us to realize red light-emitting diodes (LEDs) with 5.02% external quantum efficiency and 748 cd/m2 luminance, surpassing by far LEDs made from the nonpassivated NCs.
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