Surface engineering of high-<i>k</i> polymeric dielectric layers with a fluorinated organic crosslinker for use in flexible-platform electronicsopen access
- Authors
- Ye, Heqing; Kwon, Hyeok-jin; Ryu, Ka Yeon; Wu, Kaibin; Park, Jeongwan; Babita, Giri; Kim, Inae; Yang, Chanwoo; Kong, Hoyoul; Kim, Se Hyun
- Issue Date
- Aug-2024
- Publisher
- The Royal Society of Chemistry
- Citation
- Nanoscale Advances, v.6, no.16, pp 4119 - 4127
- Pages
- 9
- Indexed
- SCIE
SCOPUS
- Journal Title
- Nanoscale Advances
- Volume
- 6
- Number
- 16
- Start Page
- 4119
- End Page
- 4127
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/71040
- DOI
- 10.1039/d3na01018j
- ISSN
- 2516-0230
- Abstract
- High-k polymeric layers were prepared by combining various functional groups and were applied as gate dielectrics for practical organic field-effect transistors (OFETs). Crosslinking of the polymeric layers through UV-assisted organic azide fluorine-based crosslinkers induced dramatic improvements in the electrical performance of the OFET, such as field-effect mobility and bias-stress stability. Our synthesis and manufacturing method can be a useful technique for ensuring device operation stability and electrical property enhancement. With this analysis, we further applied our polymer-dielectric OFETs to flexible-platform-based electronic components, including unit OFETs and simple logic devices (NOT, NAND, and NOR gates). The outcomes of this research and development suggest a suitable method for the low-cost mass production of large-area flexible and printable devices, using a printing-based approach to replace current processes.
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