Inkjet-Printed Patterned Quantum Dots Film for High-Efficiency Displays
Author:
Affiliation:
1. School of Materials Science and Engineering, Shanghai, China
2. School of Mechatronics and Automation, Shanghai, China
3. Key Laboratory of Advanced Display and System Applications, Ministry of Education, Shanghai University, Shanghai, China
Funder
Science and Technology Commission of Shanghai Municipality Program
National Natural Science Foundation of China
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics
Link
http://xplorestaging.ieee.org/ielx7/4563994/9913505/09947281.pdf?arnumber=9947281
Reference26 articles.
1. Inkjet‐Printed Micrometer‐Thick Patterned Perovskite Quantum Dot Films for Efficient Blue‐to‐Green Photoconversion
2. Investigation of Luminescence Enhancement and Decay of QD-LEDs: Interface Reactions between QDs and Atmospheres
3. Inhibiting the Surface Oxidation of Low-Cadmim-Content ZnS:(Cd,Se) Quantum Dots for Enhancing Application Reliability
4. Polymer-Assisted High-Resolution Printing Techniques for Colloidal Quantum Dots
5. Inkjet printed quantum dot film formed by controlling surface wettability for blue-to-green color conversion
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1. Recent Progress on Quantum Dot Patterning Technologies for Commercialization of QD‐LEDs: Current Status, Future Prospects, and Exploratory Approaches;Small Methods;2024-01-09
2. Wafer-Scale Monolithic Integration of Blue Micro-Light-Emitting Diodes and Green/Red Quantum Dots for Full-Color Displays;IEEE Electron Device Letters;2023-08
3. Quantum Dot Color Conversion Characteristics and Performance Improvement Based on Micro-LED;IEEE Transactions on Electron Devices;2023-07
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