Cited time in webofscience Cited time in scopus

The Role of the Bottom Oxide Layer in Oxide-Metal-Oxide (OMO) Electrode for Stretchable Organic Light-Emitting Diodes

Title
The Role of the Bottom Oxide Layer in Oxide-Metal-Oxide (OMO) Electrode for Stretchable Organic Light-Emitting Diodes
Author(s)
Lee, Chang MinKim, Yeong BeomSarker, SubrataKim, Dong HyunKim, Tae WookShah, Syed Hamad UllahCho, Hyun WooBae, Tae-SungYu, Seung MinKang, Yong-CheolHan, SangminJesuraj, P. JustinKo, Keum-JinSong, MyungkwanKim, Chang-SuRyu, Seung Yoon
Issued Date
2024-01
Citation
Advanced Materials Interfaces, v.11, no.2
Type
Article
Author Keywords
stretchable organic light-emitting diodes (SOLEDs)the Volmer-Webber growthcoordinate covalent bondoxide-metal-oxide (OMO)seed layer
Keywords
TRANSPARENTDESIGNFILMSITO
ISSN
2196-7350
Abstract
The challenges for stretchable organic light-emitting diodes (SOLEDs) have led research into advanced manufacturing processes. Several electrodes have been researched to replace conventional indium tin oxide in SOLEDs due to its brittleness, indium scarcity in earth, and poor deformation capabilities. Oxide–metal–oxide (OMO) electrodes are promising alternatives for flexible/stretchable electronics owing their excellent charge injection and optical transparencies, including mechanical compliance. In this study, two oxides (i.e., MoO3 and V2O5) with different surface energies in an OMO structure to effectively inhibit the island growth of the ultra-thin Au (5nm) metal is incorporated. The morphology and interfacial coordinate covalent bonds between the seed layer and ultra-thin Au film are extensively studied. The improved ultra-thin Au growth in OMO structure together with figure-of-merit have been employed as the anode for a phosphorescent SOLED structure. The SOLEDs with OMO electrode under V2O5 as bottom oxide remain stable after peeling-off and sustain a >50% uniaxial strain with a negligible reduction in luminance and current efficiencies. The surface energy and interface of the bottom oxide in the OMO structure are crucial for thin metals to attain superior optical, structural, electronic, and mechanical stability in SOLEDs. © 2023 The Authors. Advanced Materials Interfaces published by Wiley-VCH GmbH. This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
URI
http://hdl.handle.net/20.500.11750/47721
DOI
10.1002/admi.202300652
Publisher
Wiley
Files in This Item:
001084819100001.pdf

001084819100001.pdf

기타 데이터 / 4.93 MB / Adobe PDF download
Appears in Collections:
ETC 1. Journal Articles

qrcode

  • twitter
  • facebook
  • mendeley

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE