Wu Xihu, Tam Teck Lip Dexter, Chen Shuai, Salim Teddy, Zhao Xiaoming, Zhou Zhongliang, Lin Ming, Xu Jianwei, Loo Yueh-Lin, Leong Wei Lin
School of Electrical and Electronic Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Institute of Sustainability for Chemical, Engineering and Environment (ISCE2), Agency of Science, Technology and Research (A*STAR), 1 Pesek Road, Singapore, 627833, Singapore.
Adv Mater. 2022 Oct;34(42):e2206118. doi: 10.1002/adma.202206118. Epub 2022 Sep 13.
The rapid development of organic electrochemical transistor (OECTs)-based circuits brings new opportunities for next-generation integrated bioelectronics. The all-polymer bulk-heterojunction (BHJ) offers an attractive, inexpensive alternative to achieve efficient ambipolar OECTs, and building blocks of logic circuits constructed from them, but have not been investigated to date. Here, the first all-polymer BHJ-based OECTs are reported, consisting of a blend of new p-type ladder conjugated polymer and a state-of-the-art n-type ladder polymer. The whole ladder-type polymer BHJ also proves that side chains are not necessary for good ion transport. Instead, the polymer nanostructures play a critical role in the ion penetration and transportation and thus in the device performance. It also provides a facile strategy and simplifies the fabrication process, forgoing the need to pattern multiple active layers. In addition, the development of complementary metal-oxide-semiconductor (CMOS)-like OECTs allows the pursuit of advanced functional logic circuitry, including inverters and NAND gates, as well as for amplifying electrophysiology signals. This work opens a new approach to the design of new materials for OECTs and will contribute to the development of organic heterojunctions for ambipolar OECTs toward high-performing logic circuits.
基于有机电化学晶体管(OECT)的电路的快速发展为下一代集成生物电子学带来了新机遇。全聚合物本体异质结(BHJ)为实现高效双极性OECT及其构建的逻辑电路提供了一种有吸引力的、低成本的替代方案,但迄今为止尚未得到研究。在此,报道了首个基于全聚合物BHJ的OECT,它由新型p型梯形共轭聚合物与一种先进的n型梯形聚合物的混合物组成。整个梯形聚合物BHJ还证明了良好的离子传输并不需要侧链。相反,聚合物纳米结构在离子渗透和传输中起着关键作用,进而影响器件性能。它还提供了一种简便策略并简化了制造工艺,无需对多个有源层进行图案化。此外,类互补金属氧化物半导体(CMOS)的OECT的发展使得能够追求先进的功能逻辑电路,包括反相器和与非门,以及放大电生理信号。这项工作为OECT新材料的设计开辟了一条新途径,并将有助于推动用于双极性OECT的有机异质结朝着高性能逻辑电路发展。