Page 209 - Read Online
P. 209
Jeon et al. Soft Sci. 2025, 5, 1 https://dx.doi.org/10.20517/ss.2024.35 Page 39 of 39
2015, 36, 908-10. DOI
196. Baruah, R. K.; Paily, R. P. High-temperature effects on device performance of a junctionless transistor. In: 2012 International
Conference on Emerging Electronics; 2012 Dec 15-17; Mumbai, India. IEEE; 2012. p. 1-4. DOI
197. Jiang, J.; Sun, J.; Dou, W.; Zhou, B.; Wan, Q. Junctionless in-plane-gate transparent thin-film transistors. Appl. Phys. Lett. 2011, 99,
193502. DOI
198. Jeon, S. P.; Jo, J. W.; Nam, D.; Kang, D. W.; Kim, Y. H.; Park, S. K. Junctionless structure indium-tin oxide thin-film transistors
enabling enhanced mechanical and contact stability. ACS. Appl. Mater. Interfaces. 2024, 16, 38198-207. DOI PubMed
199. Miyakawa, M.; Tsuji, H.; Nakata, M. Highly stretchable island-structure metal oxide thin-film transistor arrays using acrylic adhesive
for deformable display applications. J. Soc. Info. Display. 2022, 30, 699-705. DOI
200. Nakata, M.; Motomura, G.; Nakajima, Y.; et al. Development of flexible displays using back-channel-etched In-Sn-Zn-O thin-film
transistors and air-stable inverted organic light-emitting diodes: flexible displays using BCE-ITZO-TFTs and iOLEDs. Jnl. Soc. Info.
Display. 2016, 24, 3-11. DOI
201. Xu, H.; Luo, D.; Li, M.; et al. A flexible AMOLED display on the PEN substrate driven by oxide thin-film transistors using anodized
aluminium oxide as dielectric. J. Mater. Chem. C. 2014, 2, 1255-9. DOI

