Electrolyte-gated transistors for enhanced performance bioelectronics
Abstract Electrolyte-gated transistors (EGTs), capable of transducing biological and
biochemical inputs into amplified electronic signals and stably operating in aqueous …
biochemical inputs into amplified electronic signals and stably operating in aqueous …
A guide for the characterization of organic electrochemical transistors and channel materials
The organic electrochemical transistor (OECT) is one of the most versatile devices within the
bioelectronics toolbox, with its compatibility with aqueous media and the ability to transduce …
bioelectronics toolbox, with its compatibility with aqueous media and the ability to transduce …
Flexible and stretchable organic electrochemical transistors for physiological sensing devices
Flexible and stretchable bioelectronics provides a biocompatible interface between
electronics and biological systems and has received tremendous attention for in situ …
electronics and biological systems and has received tremendous attention for in situ …
n-Type organic semiconducting polymers: stability limitations, design considerations and applications
This review outlines the design strategies which aim to develop high performing n-type
materials in the fields of organic thin film transistors (OTFT), organic electrochemical …
materials in the fields of organic thin film transistors (OTFT), organic electrochemical …
Semiconducting polymers for neural applications
Electronically interfacing with the nervous system for the purposes of health diagnostics and
therapy, sports performance monitoring, or device control has been a subject of intense …
therapy, sports performance monitoring, or device control has been a subject of intense …
Organic neuroelectronics: from neural interfaces to neuroprosthetics
Requirements and recent advances in research on organic neuroelectronics are outlined
herein. Neuroelectronics such as neural interfaces and neuroprosthetics provide a …
herein. Neuroelectronics such as neural interfaces and neuroprosthetics provide a …
Organic electrochemical transistors for in vivo bioelectronics
Organic electrochemical transistors (OECTs) are presently a focus of intense research and
hold great potential in expanding the horizons of the bioelectronics industry. The notable …
hold great potential in expanding the horizons of the bioelectronics industry. The notable …
Operando characterization of organic mixed ionic/electronic conducting materials
Operando characterization plays an important role in revealing the structure–property
relationships of organic mixed ionic/electronic conductors (OMIECs), enabling the direct …
relationships of organic mixed ionic/electronic conductors (OMIECs), enabling the direct …
Cyano‐Functionalized n‐Type Polymer with High Electron Mobility for High‐Performance Organic Electrochemical Transistors
Abstract n‐Type organic mixed ionic–electronic conductors (OMIECs) with high electron
mobility are scarce and highly challenging to develop. As a result, the figure‐of‐merit (µC*) …
mobility are scarce and highly challenging to develop. As a result, the figure‐of‐merit (µC*) …
Synthetic nuances to maximize n-type organic electrochemical transistor and thermoelectric performance in fused lactam polymers
A series of fully fused n-type mixed conduction lactam polymers p (g 7 NC n N),
systematically increasing the alkyl side chain content, are synthesized via an inexpensive …
systematically increasing the alkyl side chain content, are synthesized via an inexpensive …