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Cited 3 time in webofscience Cited 3 time in scopus
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Uniform Insulating Properties of Low-Temperature Curable Gate Dielectric for Organic Thin-Film Transistor Arrays on Plastic Substrate

Authors
Kim, Joo-YoungSong, ByonggwonKim, JungwooKoo, BonwonKim, HyoekJung, Myung-SupLee, Bang-LinPark, Jeong-IlKim, Jang-Joo
Issue Date
Jan-2019
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Flexible displays; inkjet printing; low-temperature process; organic gate dielectric; organic thin-film transistors; plastic substrates; polymer semiconductor
Citation
IEEE ELECTRON DEVICE LETTERS, v.40, no.1, pp 99 - 102
Pages
4
Indexed
SCI
SCIE
SCOPUS
Journal Title
IEEE ELECTRON DEVICE LETTERS
Volume
40
Number
1
Start Page
99
End Page
102
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/73103
DOI
10.1109/LED.2018.2880320
ISSN
0741-3106
1558-0563
Abstract
Achieving a high-resolution display on a plastic substrate requires a low-temperature process to ensure dimensional stability during fabrication process, including the deposition of gate dielectrics. Evaluation platform to confirm the uniform insulating properties of organic dielectric material prior to actual application to organic thin-film transistor arrays were proposed. This test method enabled verification of the suitability of the low-temperature curable dielectric and chemical resistance during the fabrication process. A cross-linked poly(hydroxy imide) that can be cured at a low temperature of 130 degrees C exhibited stable insulating properties in a large area that sudden breakdown was not observed in an electric field up to 4 MV/cm. Thiophenethiazole-based copolymer semiconductor was used as an active layer and inkjet-printed. In all the processes, the temperature of the substrate was kept below 130 degrees C, and 4.8-inch electrophoretic display panels on a polyethylene naphthalate substrate with a resolution of 98 dpi was demonstrated.
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