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Photocurable polymer gate dielectrics for cylindrical organic field-effect transistors with high bending stabilityopen access

Authors
Jang, JaeyoungNam, SoojiHwang, JihunPark, Jong-JinIm, JungkyunPark, Chan EonKim, Jong Min
Issue Date
Jan-2012
Publisher
ROYAL SOC CHEMISTRY
Citation
JOURNAL OF MATERIALS CHEMISTRY, v.22, no.3, pp.1054 - 1060
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MATERIALS CHEMISTRY
Volume
22
Number
3
Start Page
1054
End Page
1060
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/166440
DOI
10.1039/c1jm14091d
ISSN
0959-9428
Abstract
Here we describe the use of photocurable poly(vinyl cinnamate) (PVCN) as a gate dielectric in high-performance cylindrical organic field-effect transistors (OFETs) with high bending stability. A smooth-surface metallic fiber (Al wire) was employed as a cylindrical substrate, and polymer dielectrics (PVCN and poly(4-vinyl phenol) (PVP)) were formed via dip-coating. The PVCN and PVP dielectrics deposited on the Al wire and respectively cross-linked via UV irradiation and thermal heating were found to be very smooth and uniform over the entire coated area. Pentacene-based cylindrical OFETs with the polymer dielectrics exhibited high-performance hysteresis-free operation. Devices made with the PVCN dielectric showed superior bending stability than devices made with PVP dielectrics or previously reported cylindrical OFETs due to the good flexibility of the PVCN dielectric. The devices maintained their excellent performance under bending at a bending radius comparable to the lowest value reported for planar OFETs.
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