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Unraveled Face-Dependent Effects of Multilayered Graphene Embedded in Transparent Organic Light-Emitting Diodes

Authors
Lim, Jong TaeKim, JaesuLee, HyunkooMoon, JaehyunKwon, Byoung-HwaAhn, SeongdeokCho, Nam SungAhn, Byung-WookLee, Jeong-IkIhm, KyuwookLim, Seong Chu
Issue Date
Dec-2017
Publisher
AMER CHEMICAL SOC
Keywords
graphene electrodes; luminescence properties; near-edge X-ray absorption; fine structure; organic light-emitting diodes; surface states
Citation
ACS APPLIED MATERIALS INTERFACES, v.9, no.49, pp 43105 - 43112
Pages
8
Journal Title
ACS APPLIED MATERIALS INTERFACES
Volume
9
Number
49
Start Page
43105
End Page
43112
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/146950
DOI
10.1021/acsami.7b13973
ISSN
1944-8244
1944-8252
Abstract
With increasing demand for transparent conducting electrodes, graphene has attracted considerable attention, owing to its high electrical conductivity, high transmittance, low reflectance, flexibility, and tunable work function. Two faces, of single-layer graphene are indistinguishable in its nature, and this idea has not been doubted even in multilayered graphene (MLG) because it is difficult to separately characterize the front (first-born) and the rear face (last-born) of MLG by using conventional analysis tools, such as Raman and ultraviolet spectroscopy, scanning probe microscopy, and sheet resistance. In this paper, we report the striking difference of the emission pattern and performance of transparent organic light-emitting diodes (OLEDs) depending on the adopted face of MLG and show the resolved chemical and physical states of both faces by using depth-selected absorption spectroscopy. Our results strongly support that the interface property between two different materials rules over the bulk property in the driving performance of OLEDs.
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