Zhao Pengfei, Wang Xue, Tong Yanhong, Zhao Xiaoli, Tang Qingxin, Liu Yichun
Center for Advanced Optoelectronic Functional Materials Research, and Key Lab of UV-Emitting Materials and Technology of Ministry of Education, Northeast Normal University, 5268 Renmin Street, Changchun, 130024, China.
Small. 2024 Jul;20(28):e2309263. doi: 10.1002/smll.202309263. Epub 2024 Feb 6.
The development of high-precision insoluble conducting polymer patterns for soft electronics is extremely challenging, mainly because of the incompatibility of the synthesis process with the underlying layers. In this study, a novel transfer-printing method is designed that enables the fabrication of photolithographic insoluble conducting polypyrrole (PPy) electrode patterns on soft substrates with high precision, demonstrating compatibility with various soft organic functional layers. Excellent mechanical stability, good biocompatibility, ultra-smooth surface, and outstanding conformability are observed. The photolithographic PPy electrode patterns, combined with an elastic organic semiconductor and dielectric, produce conformal all-organic transistors with mobility of 1.8 cm V s. This study paves the way to use insoluble conducting polymers to develop complex, high-density flexible patterns and offers a promising organic electrode for the new-generation soft all-organic electronics.
用于柔性电子器件的高精度不溶性导电聚合物图案的开发极具挑战性,主要是因为合成过程与底层不兼容。在本研究中,设计了一种新颖的转移印刷方法,该方法能够在柔性基板上高精度地制造光刻不溶性导电聚吡咯(PPy)电极图案,证明了与各种柔性有机功能层的兼容性。观察到其具有优异的机械稳定性、良好的生物相容性、超光滑表面和出色的贴合性。光刻PPy电极图案与弹性有机半导体和电介质相结合,可制造出迁移率为1.8 cm V s的保形全有机晶体管。本研究为使用不溶性导电聚合物开发复杂、高密度柔性图案铺平了道路,并为新一代柔性全有机电子器件提供了一种有前景的有机电极。