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Thin-film transistor-driven vertically stacked full-color organic light-emitting diodes for high-resolution active-matrix displays

Authors
Choi, SukyungKang, Chan-moByun, Chun-WonCho, HyunsuKwon, Byoung-HwaHan, Jun-HanYang, Jong-HeonShin, Jin-WookHwang, Chi-SunCho, Nam SungLee, Kang MeKim, Hee-OkKim, EungjunYoo, SeunghyupLee, Hyunkoo
Issue Date
Jun-2020
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE COMMUNICATIONS, v.11, no.1
Journal Title
NATURE COMMUNICATIONS
Volume
11
Number
1
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/1461
DOI
10.1038/s41467-020-16551-8
ISSN
2041-1723
Abstract
Thin-film transistor (TFT)-driven full-color organic light-emitting diodes (OLEDs) with vertically stacked structures are developed herein using photolithography processes, which allow for high-resolution displays of over 2,000 pixels per inch. Vertical stacking of OLEDs by the photolithography process is technically challenging, as OLEDs are vulnerable to moisture, oxygen, solutions for photolithography processes, and temperatures over 100 degrees C. In this study, we develop a low-temperature processed Al2O3/SiNx bilayered protection layer, which stably protects the OLEDs from photolithography process solutions, as well as from moisture and oxygen. As a result, transparent intermediate electrodes are patterned on top of the OLED elements without degrading the OLED, thereby enabling to fabricate the vertically stacked OLED. The aperture ratio of the full-color-driven OLED pixel is approximately twice as large as conventional sub-pixel structures, due to geometric advantage, despite the TFT integration. To the best of our knowledge, we first demonstrate the TFT-driven vertically stacked full-color OLED.
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