Organic Electrochemical Transistors Based on the Conjugated Polyelectrolyte PCPDTBT-SO<sub>3</sub> K (CPE-K).

Lill, Alexander T; Cao, David X; Schrock, Max; Vollbrecht, Joachim; Huang, Jianfei; Nguyen-Dang, Tung; Brus, Viktor V; Yurash, Brett et al. · Adv Mater · 2020

basic_science · Level V

Where this comes from

Abstract

PCPDTBT-SO<sub>3</sub> K (CPE-K), a conjugated polyelectrolyte, is presented as a mixed conductor material that can be used to fabricate high transconductance accumulation mode organic electrochemical transistors (OECTs). OECTs are utilized in a wide range of applications such as analyte detection, neural interfacing, impedance sensing, and neuromorphic computing. The use of interdigitated contacts to enable high transconductance in a relatively small device area in comparison to standard contacts is demonstrated. Such characteristics are highly desired in applications such as neural-activity sensing, where the device area must be minimized to reduce invasiveness. The physical and electrical properties of CPE-K are fully characterized to allow a direct comparison to other top performing OECT materials. CPE-K demonstrates an electrical performance that is among the best reported in the literature for OECT materials. In addition, CPE-K OECTs operate in the accumulation mode, which allows for much lower energy consumption in comparison to commonly used depletion mode devices.