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利用电流体动力喷射形成量子点薄膜的电喷雾机制及发光器件应用。

Electrospray mechanism for quantum dot thin-film formation using an electrohydrodynamic jet and light-emitting device application.

作者信息

Nguyen Tuan Canh, Choi Woon-Seop

机构信息

School of Electronics and Display Engineering, Hoseo University, Asan, Chungnam, 31499, Korea.

出版信息

Sci Rep. 2020 Jul 6;10(1):11075. doi: 10.1038/s41598-020-67867-w.

Abstract

A novel electrohydrodynamic (EHD) electrospray coating mechanism was proposed for the continuous fabrication of large-area quantum dot (QD) thin films for high-performance light-emitting diodes (LEDs). The size of QD droplets was systemically controlled using the stable EHD electrospray mode from a mixed solvent, which is a crucial factor for the formation of large and smooth QD thin films. The minimum amount of material consumption was achieved during the process by applying the unique coating system. A QD-LED device based on electrodeposited QDs showed a maximum luminance of 12,082 cd m, maximum current efficiency of nearly 4.0 cd A, and maximum EQE of 1.86%. This system demonstrates not only high reproducibility but could also pave the way for commercializing high-quality QD-LED devices.

摘要

提出了一种新型的电流体动力学(EHD)电喷雾涂覆机制,用于连续制备用于高性能发光二极管(LED)的大面积量子点(QD)薄膜。通过混合溶剂的稳定EHD电喷雾模式系统地控制了量子点液滴的尺寸,这是形成大面积且光滑的量子点薄膜的关键因素。通过应用独特的涂覆系统,在此过程中实现了材料消耗的最小化。基于电沉积量子点的量子点发光二极管器件显示出最大亮度为12,082 cd m,最大电流效率接近4.0 cd A,最大外量子效率为1.86%。该系统不仅展示了高重现性,还可为高质量量子点发光二极管器件的商业化铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ce8/7338508/dd07ed3b5b12/41598_2020_67867_Fig1_HTML.jpg

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