Highly Efficient and Flexible Perovskite Nanocrystal Light-Emitting Diodes on Disposable Paper Substrates

材料科学 聚对苯二甲酸乙二醇酯 光电子学 灵活的显示器 发光二极管 钙钛矿(结构) 基质(水族馆) 表面粗糙度 弯曲半径 二极管 图层(电子) 抗弯强度 纳米晶 量子效率 弯曲模量 有机发光二极管 柔性电子器件 润湿 弯曲 复合材料 纳米技术 薄膜晶体管 化学工程 工程类 海洋学 地质学
作者
Feisong Qin,Ting Li,Min Lu,Siqi Sun,Po Lu,Xin Li,Nannan Feng,Yù Zhang,Yanbo Gao,Zhennan Wu,Junhua Hu,Fengping Yan,Xue Bai
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:15 (40): 47278-47285 被引量:5
标识
DOI:10.1021/acsami.3c10070
摘要

Perovskite nanocrystals have been widely applied in the field of light-emitting diodes (LEDs) due to their excellent optoelectronic properties. However, there is generally a serious degradation of device efficiency when transferring the device from rigid to flexible substrates due to the high roughness, poor wettability, and low endurance temperature of flexible substrates. Herein, a highly flexible perovskite light-emitting diode (PeLED) by utilizing label paper as substrates and poly(methyl methacrylate) (PMMA) as the modified layer was reported. Compared with the reference device based on commonly used polyethylene terephthalate (PET) substrates, the label paper/PMMA-based devices did not show the degraded device performance when transferring from rigid to flexible substrates. This is mainly because of low roughness and good wettability of PMMA-modified label paper, which significantly improve the film-forming ability of the bottom electrode and functional layer. Furthermore, the flexibility of both devices was explored by a three-point bending flexural test, indicating that the label paper-based device has better bending stability than the polyethylene terephthalate-based one due to the lower flexural modulus for label paper. As a result, the label paper-based flexible PeLEDs exhibited the highest external quantum efficiency (EQE) of 14.3% among perovskite nanocrystal-based flexible LEDs and preeminent flexibility with 29% luminance degradation after bending for 1000 cycles at a small radius of 1.5 mm. This extension of the substrate to paper will widen the opportunity of PeLEDs in extremely flexible and inexpensive applications.

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