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In Situ Formed Perovskite Nanocrystal Films Toward Efficient Circularly Polarized Electroluminescence

Changhui Yang, Hui Xiao, Y.L. Sang, Jian Luo, Shang‐Biao Xiao, Hong‐Li Xuan, Qing-Rong Ding, Wenlie Lin, Zong‐Xiang Xu, Zhong‐Ning Chen, Liang‐Jin Xu

2023Advanced Functional Materials29 citationsDOI

Abstract

Abstract Circularly polarized electroluminescence (CPEL) is an active area of research because of its wide application in 3D displays and anti‐counterfeiting. However, it is not trivial to obtain a high asymmetry factor for highly efficient CPELs. Herein, a highly efficient CPEL is demonstrated with a superior asymmetry factor by using a chiral phosphine‐oxide‐passivated perovskite film as an emitter. An in situ‐formed perovskite nanocrystalline (NC) film is obtained by passivation of the chiral phosphine oxide. The as‐formed film exhibits much‐enhanced photoluminescence compared with the pristine film. More importantly, the NC film exhibits excellent chiral photoluminescence with a luminescence dissymmetry factor glum as high as 5.6 × 10 −3 . Electrically driven light‐emitting diodes based on the NC film exhibited superior device performance with a maximum brightness of 18,783 cd m −2 and a peak external quantum efficiency of 3.6%. More encouragingly, an unprecedented electroluminescence asymmetry factor gEL of up to 0.18 is achieved because of the chiral lattice distortion of the perovskite, which is the state‐of‐the‐art among hybrid materials.

Topics & Concepts

Materials scienceElectroluminescencePhotoluminescencePerovskite (structure)Nanocrystalline materialPassivationOptoelectronicsNanocrystalLuminescenceLight-emitting diodeOxideNanotechnologyChemical engineeringEngineeringMetallurgyLayer (electronics)Perovskite Materials and ApplicationsQuantum Dots Synthesis And PropertiesOrganic Light-Emitting Diodes Research