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High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing

The development of quantum dot light-emitting diode (QLED) fabrication technologies for high-definition and low-cost displays is an important research topic. However, commercially available piezoelectric inkjet printing has reached its limit in reducing pixel sizes, which restricts its potential use...

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Autores principales: Wang, Haowei, Zhang, Yuanming, Liu, Yang, Chen, Zhuo, Li, Yanzhao, Li, Xinguo, Xu, Xiaoguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926896/
https://www.ncbi.nlm.nih.gov/pubmed/36798500
http://dx.doi.org/10.1039/d2na00862a
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author Wang, Haowei
Zhang, Yuanming
Liu, Yang
Chen, Zhuo
Li, Yanzhao
Li, Xinguo
Xu, Xiaoguang
author_facet Wang, Haowei
Zhang, Yuanming
Liu, Yang
Chen, Zhuo
Li, Yanzhao
Li, Xinguo
Xu, Xiaoguang
author_sort Wang, Haowei
collection PubMed
description The development of quantum dot light-emitting diode (QLED) fabrication technologies for high-definition and low-cost displays is an important research topic. However, commercially available piezoelectric inkjet printing has reached its limit in reducing pixel sizes, which restricts its potential use in high-resolution displays. Here, we exhibit an electrohydrodynamic (EHD) printing method for manufacturing QLEDs with a high resolution of 500 ppi that remarkably surpasses the resolution of conventional inkjet printing displays. By optimizing the EHD printing process, a high-resolution pixelated bottom-emitting passive matrix QLED with a maximal current efficiency of 14.4 cd A(−1) in a pixel size of 5 μm × 39 μm was achieved, indicating the capability of the EHD method in superfine printing and high efficiency QLED. Moreover, a top-emitting device is designed using a capping layer; the maximal current efficiency of top-emission passive matrix QLED devices can reach up to 16.5 cd A(−1). Finally, a two-color (red and green) bottom-emission QLED device with 500 ppi was fabricated. The successful fabrication of these high-efficiency QLEDs with 500 ppi demonstrated that the EHD printing strategy has numerous potential applications in high-resolution and high-performance QLEDs for a range of applications, such as mobile or wearable devices.
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spelling pubmed-99268962023-02-15 High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing Wang, Haowei Zhang, Yuanming Liu, Yang Chen, Zhuo Li, Yanzhao Li, Xinguo Xu, Xiaoguang Nanoscale Adv Chemistry The development of quantum dot light-emitting diode (QLED) fabrication technologies for high-definition and low-cost displays is an important research topic. However, commercially available piezoelectric inkjet printing has reached its limit in reducing pixel sizes, which restricts its potential use in high-resolution displays. Here, we exhibit an electrohydrodynamic (EHD) printing method for manufacturing QLEDs with a high resolution of 500 ppi that remarkably surpasses the resolution of conventional inkjet printing displays. By optimizing the EHD printing process, a high-resolution pixelated bottom-emitting passive matrix QLED with a maximal current efficiency of 14.4 cd A(−1) in a pixel size of 5 μm × 39 μm was achieved, indicating the capability of the EHD method in superfine printing and high efficiency QLED. Moreover, a top-emitting device is designed using a capping layer; the maximal current efficiency of top-emission passive matrix QLED devices can reach up to 16.5 cd A(−1). Finally, a two-color (red and green) bottom-emission QLED device with 500 ppi was fabricated. The successful fabrication of these high-efficiency QLEDs with 500 ppi demonstrated that the EHD printing strategy has numerous potential applications in high-resolution and high-performance QLEDs for a range of applications, such as mobile or wearable devices. RSC 2023-01-30 /pmc/articles/PMC9926896/ /pubmed/36798500 http://dx.doi.org/10.1039/d2na00862a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Haowei
Zhang, Yuanming
Liu, Yang
Chen, Zhuo
Li, Yanzhao
Li, Xinguo
Xu, Xiaoguang
High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title_full High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title_fullStr High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title_full_unstemmed High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title_short High-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
title_sort high-efficiency and high-resolution patterned quantum dot light emitting diodes by electrohydrodynamic printing
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9926896/
https://www.ncbi.nlm.nih.gov/pubmed/36798500
http://dx.doi.org/10.1039/d2na00862a
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